Recent progress in B K and ε K in lattice QCD

Size: px
Start display at page:

Download "Recent progress in B K and ε K in lattice QCD"

Transcription

1 Recent progress in B K and ε K in lattice QCD Weonjong Lee on behalf of the SWME Collaboration Lattice Gauge Theory Research Center Department of Physics and Astronomy Seoul National University KIAS PPC Workshop, 11/12/2013 Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

2 Contents 1 Testing the Standard Model Indirect CP violation and B K 2 B K B K on the lattice Data Analysis for B K Continuum extrapolation of B K 3 Conclusion and Future Plan 4 Project: 1998 Present Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

3 Testing the Standard Model Indirect CP violation and B K CP Violation and B K Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

4 Testing the Standard Model Indirect CP violation and B K Kaon Eigenstates and ε Flavor eigenstates, K 0 = ( sd) and K 0 = (s d) mix via box diagrams. s W d s u,c,t d u,c,t u,c,t W W d W s d u,c,t s (a) (b) Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

5 Testing the Standard Model Indirect CP violation and B K Kaon Eigenstates and ε Flavor eigenstates, K 0 = ( sd) and K 0 = (s d) mix via box diagrams. s W d s u,c,t d u,c,t u,c,t W W d W (a) s d u,c,t CP eigenstates K 1 (even) and K 2 (odd). K 1 = 1 2 (K 0 K 0 ) K 2 = 1 2 (K 0 + K 0 ) (b) s Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

6 Testing the Standard Model Indirect CP violation and B K Kaon Eigenstates and ε Flavor eigenstates, K 0 = ( sd) and K 0 = (s d) mix via box diagrams. s W d s u,c,t d u,c,t u,c,t W W d W (a) s d u,c,t CP eigenstates K 1 (even) and K 2 (odd). K 1 = 1 2 (K 0 K 0 ) K 2 = 1 2 (K 0 + K 0 ) Neutral Kaon eigenstates K S and K L. K S = (b) ε 2 (K 1 + εk 2 ) K L = s ε 2 (K 2 + εk 1 ) Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

7 Testing the Standard Model Indirect CP violation and B K Indirect CP violation and direct CP violation Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

8 Testing the Standard Model Indirect CP violation and B K ε and ˆB K Experiment: ε = (2.228 ± 0.011) 10 3 e iφε, φ ε = 43.52(5). Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

9 Testing the Standard Model Indirect CP violation and B K ε and ˆB K Experiment: ε = (2.228 ± 0.011) 10 3 e iφε, φ ε = 43.52(5). Relation between ε and ˆB K in standard model. ε = exp(iφ ε ) 2 sin(φ ε ) C ε Imλ t X ˆB K + ξ + ξ LD X = Reλ c [η 1 S 0 (x c ) η 3 S 3 (x c, x t )] Reλ t η 2 S 0 (x t ) λ i = V isv id, x i = m 2 i /M 2 W, C ε = G2 F F 2 K m KM 2 W 6 2π 2 M K ξ = exp(iφ ε ) sin(φ ε ) ImA 0 ReA 0 ξ LD = Long Distance Effect 2% Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

10 Testing the Standard Model Indirect CP violation and B K ε and ˆB K Experiment: ε = (2.228 ± 0.011) 10 3 e iφε, φ ε = 43.52(5). Relation between ε and ˆB K in standard model. ε = exp(iφ ε ) 2 sin(φ ε ) C ε Imλ t X ˆB K + ξ + ξ LD X = Reλ c [η 1 S 0 (x c ) η 3 S 3 (x c, x t )] Reλ t η 2 S 0 (x t ) λ i = V isv id, x i = m 2 i /M 2 W, C ε = G2 F F 2 K m KM 2 W 6 2π 2 M K ξ = exp(iφ ε ) sin(φ ε ) ImA 0 ReA 0 ξ LD = Long Distance Effect 2% Definition of B K in standard model. B K = K 0 [ sγ µ (1 γ 5 )d][ sγ µ (1 γ 5 )d] K K 0 sγ µ γ 5 d 0 0 sγ µ γ 5 d K 0 ˆB K = C(µ)B K (µ), C(µ) = α s (µ) γ 0 2b 0 [1 + α s (µ)j 3 ] Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

11 B K B K on the lattice B K on the lattice Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

12 B K B K on the lattice B K definition in standard model B K = K 0 [ sγ µ (1 γ 5 )d][ sγ µ (1 γ 5 )d] K K 0 sγ µ γ 5 d 0 0 sγ µ γ 5 d K 0 ˆB K = C(µ)B K (µ), C(µ) = α s (µ) γ 0 2b 0 [1 + α s (µ)j 3 ] Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

13 B K B K on the lattice What do we calculate on the lattice? Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

14 B K Data Analysis for B K Data Analysis for B K Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

15 B K Data Analysis for B K Data for B K with am d = am s = ( ) Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

16 B K Data Analysis for B K N f = QCD: MILC coarse lattices a (fm) am l /am s geometry ens meas production / done (SNU) / done (SNU) / done (SNU) / done (BNL) / done (SNU) / done (SNU) Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

17 B K Data Analysis for B K N f = QCD: MILC fine lattices a (fm) am l /am s geometry ens meas production / done (SNU) / done (SNU) / done (SNU) / done (SNU) / done (SNU) / done (KISTI) / done (SNU) / done (KISTI) / done (KISTI) Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

18 B K Data Analysis for B K N f = QCD: MILC superfine/ultrafine lattice a (fm) am l /am s geometry ens meas production / done (SNU) / done (KISTI) / done (KISTI) / done (SNU) / (*KISTI) / (*SNU) / (BNL) Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

19 B K Data Analysis for B K Correlated Bayesian Fitting with SU(2) SChPT (a) X-fit (b) Y-fit MILC, , 642 cnfs, 9 meas at a = 0.06 fm. Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

20 B K Data Analysis for B K Sea quarks and valence quarks Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

21 B K Continuum extrapolation of B K Continuum extrapolation of B K (1) Fitting functional form: f 1 = c 1 + c 2 (aλ Q ) 2 + c 3 L P Λ 2 X + c 4 S P Λ 2 X f 2 = f 1 + c 5 (aλ Q ) 2 L P Λ 2 + c 6 (aλ Q ) 2 S P X Λ 2 X f 3 = f 1 + c 5 αs 2 + c 6 (aλ Q ) 2 α s + c 7 (aλ Q ) 4 f 4 = f 2 + c 7 α 2 s + c 8 (aλ Q ) 2 α s + c 9 (aλ Q ) 4 Bayesian constraint = prior information: Λ Q = 0.3 GeV Λ X = 1.0 GeV c i = 0 ± 2 for i 2 Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

22 B K Continuum extrapolation of B K Continuum extrapolation of B K (2) Bayesian Fit to f B K coarse B K fine fine superfine ultrafine L P S P (c) B K vs. L P (d) B K vs. S P We exclude the MILC coarse ensembles in this fit. Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

23 B K Continuum extrapolation of B K Continuum extrapolation of B K (3) Bayesian Fit to f B K coarse B K fine fine superfine ultrafine L P S P (e) B K vs. L P (f) B K vs. S P We exclude the MILC coarse ensembles in this fit. Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

24 B K Continuum extrapolation of B K Continuum extrapolation of B K (4) fit func f 1 f 2 f 3 f 4 χ 2 /dof Fitting quality of the Bayesian fits Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

25 B K Continuum extrapolation of B K Error Budget of B K [ SU(2), 4X3Y, NNNLO] cause error (%) memo statistics 0.62 see text matching factor 4.4 B (2) K (U1) discretization am l extrap 0.78 diff. of B1 and B4 fits am s extrap X-fits 0.33 varying Bayesian priors (S1) Y-fits 0.53 diff. of linear and quad. (F1) finite volume 0.5 diff. of V = and FV fit r r 1 error propagation (F1) f π MeV vs MeV Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

26 B K Continuum extrapolation of B K Current Status of B K (1) SWME: 2011 (PRL): B K (RGI) = ˆB K = ± 0.004(stat) ± 0.038(sys) SWME: Lattice 2013 B K (RGI) = ˆB K = ± (stat) ± (sys) The statistical error remains approximately the same. The systematic error decrease slightly. Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

27 B K Continuum extrapolation of B K Current Status of ε K SWME 2013: (in units of ) ε K = 1.51 ± 0.18 ε K = 1.91 ± 0.21 for Exclusive V cb for Inclusive V cb Experiments: ε K = ± Hence, we observe 4.0/1.5 σ difference between the SM theory and experiments (exclusive/inclusive process). What does this mean? Breakdown of SM??? Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

28 B K Continuum extrapolation of B K Error Budget of Exclusive ε K cause error (%) memo V cb 51.6 Exclusive (FNAL/MILC) B K 14.4 SWME η 9.7 Wolfenstein η η ct m c 6.9 Charm quark mass... Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

29 B K Continuum extrapolation of B K Current status of B K on the lattice SWME (this work) Aubin et al (2010) RBC-UKQCD (2011) BMW (2011) B K (RGI) Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

30 B K Continuum extrapolation of B K NPR (Current Focus) Non-perturbative Renormalization (Jangho Kim): Matching factor error: 4.4% % Exceptional Momentum: % Non-exceptional Momentum: % Basically, we want to trade the truncation error with the statistical error. Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

31 B K Continuum extrapolation of B K Two-loop Perturbation (Current Focus) Two-loop Perturbation: (Jongjeong Kim and Kwangwoo Kim) Matching factor error: 4.4% 0.92% Automated Feynman Rule Generation. Automated Feynman Diagram Generation. Basically, we use non-zero quark masses to regulate the IR divergences. Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

32 Conclusion and Future Plan Grand Challenges in the front Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

33 Conclusion and Future Plan Tentative Goals (1) 1 V cb, we need to calculate the following semi-leptonic form factors: B Dlν (1) B D lν (2) Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

34 Conclusion and Future Plan Tentative Goals (1) 1 V cb, we need to calculate the following semi-leptonic form factors: B Dlν (1) B D lν (2) 2 We have already implemented a GPU version of the OK action inverter (Yong-Chull Jang). Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

35 Conclusion and Future Plan Tentative Goals (1) 1 V cb, we need to calculate the following semi-leptonic form factors: B Dlν (1) B D lν (2) 2 We have already implemented a GPU version of the OK action inverter (Yong-Chull Jang). 3 We need to improve the vector and axial current in the same level as the OK action (Yong-Chull Jang, and Jon Bailey). Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

36 Conclusion and Future Plan Tentative Goals (1) 1 V cb, we need to calculate the following semi-leptonic form factors: B Dlν (1) B D lν (2) 2 We have already implemented a GPU version of the OK action inverter (Yong-Chull Jang). 3 We need to improve the vector and axial current in the same level as the OK action (Yong-Chull Jang, and Jon Bailey). 4 We plan to work on this issue using the OK heavy quark action in collaboration with FNAL and MILC. Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

37 Conclusion and Future Plan Tentative Goals (2) 1 We would like to determine B K directly from the standard model with its systematic and statistical error 2%. Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

38 Conclusion and Future Plan Tentative Goals (2) 1 We would like to determine B K directly from the standard model with its systematic and statistical error 2%. 2 We expect to achieve this goal in a few years using the SNU GPU cluster: David 1, 2, 3 ( 100 Tera Flops), Jlab GPU cluster, and KISTI supercomputers. Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

39 Conclusion and Future Plan Tentative Goals (2) 1 We would like to determine B K directly from the standard model with its systematic and statistical error 2%. 2 We expect to achieve this goal in a few years using the SNU GPU cluster: David 1, 2, 3 ( 100 Tera Flops), Jlab GPU cluster, and KISTI supercomputers. 3 Basically, we need to accumulate at least 9 times more statistics using the SNU GPU cluster machine. statistical error < 1.0% Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

40 Conclusion and Future Plan Tentative Goals (2) 1 We would like to determine B K directly from the standard model with its systematic and statistical error 2%. 2 We expect to achieve this goal in a few years using the SNU GPU cluster: David 1, 2, 3 ( 100 Tera Flops), Jlab GPU cluster, and KISTI supercomputers. 3 Basically, we need to accumulate at least 9 times more statistics using the SNU GPU cluster machine. statistical error < 1.0% 4 In addition, we need to obtain the matching factor using NPR (Jangho Kim) and using the two-loop perturbation theory (Kwangwoo Kim). matching error < 1.0% Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

41 Conclusion and Future Plan Tentative Goals (3) 1 Long-Distance Effect ξ LD 2%: Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

42 Conclusion and Future Plan Tentative Goals (3) 1 Long-Distance Effect ξ LD 2%: 2 Here, the precision goal is only 10%. Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

43 Conclusion and Future Plan Tentative Goals (3) 1 Long-Distance Effect ξ LD 2%: 2 Here, the precision goal is only 10%. 3 We need N f = calculation on the lattice. MILC provides HISQ ensembles with N f = Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

44 Conclusion and Future Plan Tentative Goals (3) 1 Long-Distance Effect ξ LD 2%: 2 Here, the precision goal is only 10%. 3 We need N f = calculation on the lattice. MILC provides HISQ ensembles with N f = As a by-product, a substantial gain is that the charm quark mass dependence might be under control in this way. (Brod and Gorbahn) Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

45 Conclusion and Future Plan Ultimate Goals 1 As a result, we hope to discover a breakdown of the standard model in the level of 5σ or higher precision. Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

46 Conclusion and Future Plan Ultimate Goals 1 As a result, we hope to discover a breakdown of the standard model in the level of 5σ or higher precision. 2 As a result, we would like to provide a crucial clue to the physics beyond the standard model. Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

47 Conclusion and Future Plan Ultimate Goals 1 As a result, we hope to discover a breakdown of the standard model in the level of 5σ or higher precision. 2 As a result, we would like to provide a crucial clue to the physics beyond the standard model. 3 As a result, we would like to guide the whole particle physics community into a new world beyond the standard model. Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

48 Conclusion and Future Plan Thank God for your help!!! Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

49 Project: 1998 Present SWME Collaboration 1998 Present Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

50 Project: 1998 Present SWME Collaboration Seoul National University (SNU): Prof. Weonjong Lee Dr. Jon Bailey and Dr. Nigel Cundy (RA Prof.) Dr. Jongjeong Kim (Postdoc) and Dr. Taegil Bae (Staff) graduate students. Brookhaven National Laboratory (BNL): Dr. Chulwoo Jung Dr. Hyung-Jin Kim (Postdoc) Los Alamos National Laboratory (LANL): Dr. Boram Yoon (Postdoc) University of Washington, Seattle (UW): Prof. Stephen R. Sharpe. Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

51 Project: 1998 Present Lattice Gauge Theory Research Center (SNU) Center Leader: Prof. Weonjong Lee. Research Assistant Prof.: Dr. Jon Bailey Research Assitant Prof.: Dr. Nigel Cundy Postdoctoral Fellow: Dr. Jongjeong Kim graduate students Secretary: Ms. Sora Park. more details on Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

52 Project: 1998 Present Group Photo (2011) Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

53 Project: 1998 Present Group Photo (2013) Weonjong Lee on behalf of the SWME Collaboration (SNU)KIAS PPC 2013 KIAS PPC / 38

CP violation in kaons: BSM B-parameters and precision tests of ε K

CP violation in kaons: BSM B-parameters and precision tests of ε K CP violation in kaons: BSM B-parameters and precision tests of ε K Weonjong Lee (SWME) Lattice Gauge Theory Research Center Department of Physics and Astronomy Seoul National University INT, University

More information

arxiv: v5 [hep-lat] 6 Jul 2015

arxiv: v5 [hep-lat] 6 Jul 2015 Standard Model evaluation of ε using lattice QCD inputs for ˆB and V cb Jon A. Bailey, Yong-Chull Jang, Weonjong Lee, and Sungwoo Park Lattice Gauge Theory Research Center, FPRD, and CTP, Department of

More information

Testing the Standard Model with lattice QCD and effective field theory

Testing the Standard Model with lattice QCD and effective field theory Testing the Standard Model with lattice QCD and effective field theory Jon A. Bailey SWME Collaboration Yong-Chull Jang, Hyung-Jin Kim, Jongjeong Kim, Weonjong Lee, Jaehoon Leem, Sungwoo Park, Stephen

More information

Light pseudoscalar masses and decay constants with a mixed action

Light pseudoscalar masses and decay constants with a mixed action Light pseudoscalar masses and decay constants with a mixed action Jack Laiho Washington University Christopher Aubin and Ruth Van de Water Lattice 2008 July 15, 2008 William + Mary, July 15, 2008 p.1/21

More information

Kaon Physics in the Standard Model

Kaon Physics in the Standard Model Kaon Physics in the Standard Model RBC and UKQCD Collaborations USQCD All Hands Meeting April 28, 2017 Norman H. Christ Columbia University Five Topics 2 nd order weak with charm Long distance contribution

More information

Lattice QCD on Blue Waters

Lattice QCD on Blue Waters Lattice QCD on Blue Waters PI: Paul Mackenzie (Fermilab) Presenter: Steven Gottlieb (Indiana) (USQCD) NCSA Blue Waters Symposium for Petascale Science and Beyond Sunriver Resort May 16-19, 2017 Collaborators

More information

Light hadrons in 2+1 flavor lattice QCD

Light hadrons in 2+1 flavor lattice QCD Light hadrons..., Lattice seminar, KITP, Jan 26, 2005. U.M. Heller p. 1/42 Light hadrons in 2+1 flavor lattice QCD Urs M. Heller American Physical Society & BNL Modern Challenges for Lattice Field Theory

More information

arxiv: v1 [hep-lat] 3 Nov 2009

arxiv: v1 [hep-lat] 3 Nov 2009 SU(2 chiral fits to light pseudoscalar masses and decay constants arxiv:0911.0472v1 [hep-lat] 3 Nov 2009 The MILC Collaboration: A. Bazavov, W. Freeman and D. Toussaint Department of Physics, University

More information

D and B Meson Semileptonic Decays from the Lattice. Lattice QCD Meets Experiment Workshop April 26-27, 2010 Fermilab

D and B Meson Semileptonic Decays from the Lattice. Lattice QCD Meets Experiment Workshop April 26-27, 2010 Fermilab D and B Meson Semileptonic Decays from the Lattice Lattice QCD Meets Experiment Workshop April 26-27, 2010 Fermilab presented by : Junko Shigemitsu The Ohio State University 1 Meson Semileptonic Decays

More information

Standard Model of Particle Physics

Standard Model of Particle Physics Standard Model of Particle Physics Chris Sachrajda School of Physics and Astronomy University of Southampton Southampton SO17 1BJ UK SUSSP61, St Andrews August 8th 23rd 2006 Contents 1. Spontaneous Symmetry

More information

arxiv: v1 [hep-lat] 31 Oct 2015

arxiv: v1 [hep-lat] 31 Oct 2015 and Code Optimization arxiv:1511.00088v1 [hep-lat] 31 Oct 2015 Hwancheol Jeong, Sangbaek Lee, Weonjong Lee, Lattice Gauge Theory Research Center, CTP, and FPRD, Department of Physics and Astronomy, Seoul

More information

Lattice QCD. Steven Gottlieb, Indiana University. Fermilab Users Group Meeting June 1-2, 2011

Lattice QCD. Steven Gottlieb, Indiana University. Fermilab Users Group Meeting June 1-2, 2011 Lattice QCD Steven Gottlieb, Indiana University Fermilab Users Group Meeting June 1-2, 2011 Caveats I will borrow (shamelessly). 3 Lattice field theory is very active so there is not enough time to review

More information

MILC results and the convergence of the chiral expansion

MILC results and the convergence of the chiral expansion MILC results and the convergence of the chiral expansion MILC Collaboration + (for part) HPQCD, UKQCD Collaborations Benasque Center for Science, July 27, 2004 p.1 Collaborators MILC Collaboration: C.

More information

Isospin and Electromagnetism

Isospin and Electromagnetism Extreme Scale Computing Workshop, December 9 11, 2008 p. 1/11 Isospin and Electromagnetism Steven Gottlieb Extreme Scale Computing Workshop, December 9 11, 2008 p. 2/11 Questions In the exascale era, for

More information

Lattice QCD Calculation of Nucleon Tensor Charge

Lattice QCD Calculation of Nucleon Tensor Charge 1 / 36 Lattice QCD Calculation of Nucleon ensor Charge. Bhattacharya, V. Cirigliano, R. Gupta, H. Lin, B. Yoon PNDME Collaboration Los Alamos National Laboratory Jan 22, 2015 2 / 36 Neutron EDM, Quark

More information

Expected precision in future lattice calculations p.1

Expected precision in future lattice calculations p.1 Expected precision in future lattice calculations Shoji Hashimoto (KEK) shoji.hashimoto@kek.jp Super-B Workshop, at University of Hawaii, Jan 19 22, 2004 Expected precision in future lattice calculations

More information

Status of scalar quark matrix elements from Lattice QCD. André Walker-Loud

Status of scalar quark matrix elements from Lattice QCD. André Walker-Loud Status of scalar quark matrix elements from Lattice QCD André Walker-Loud Outline Nucleon matrix element calculations Direct method - 3 point function Indirect method - Feynman-Hellman Theorem Scalar Matrix

More information

B-meson decay constants with domain-wall light quarks and nonperturbatively tuned relativistic b-quarks

B-meson decay constants with domain-wall light quarks and nonperturbatively tuned relativistic b-quarks B-meson decay constants with domain-wall light quarks and nonperturbatively tuned relativistic b-quarks RBC and UKQCD collaborations Oliver Witzel Center for Computational Science Lattice 2013, Mainz,

More information

PoS(LATTICE 2013)500. Charmonium, D s and D s from overlap fermion on domain wall fermion configurations

PoS(LATTICE 2013)500. Charmonium, D s and D s from overlap fermion on domain wall fermion configurations Charmonium, D s and D s from overlap fermion on domain wall fermion configurations,, Y. Chen, A. Alexandru, S.J. Dong, T. Draper, M. Gong,, F.X. Lee, A. Li, 4 K.F. Liu, Z. Liu, M. Lujan, and N. Mathur

More information

Extending precision tests of the standard model using Lattice QCD

Extending precision tests of the standard model using Lattice QCD Extending precision tests of the standard model using Lattice QCD Peking University December 1, 2016 Norman H. Christ Columbia University RBC and UKQCD Collaborations Outline Lattice QCD: methods and status

More information

PoS(LAT2006)094. The decay constants f B + and f D + from three-flavor lattice QCD

PoS(LAT2006)094. The decay constants f B + and f D + from three-flavor lattice QCD The decay constants f B + and f D + from three-flavor lattice QCD C. Bernard a, C. DeTar b, M. Di Pierro c, A.X. El-Khadra d, R.T. Evans d, E. Freeland e, S. Gottlieb f, U.M. Heller g, J.E. Hetrick h,

More information

Muon g 2 Hadronic Vacuum Polarization from flavors of sea quarks using the HISQ action

Muon g 2 Hadronic Vacuum Polarization from flavors of sea quarks using the HISQ action Muon g 2 Hadronic Vacuum Polarization from 2+1+1 flavors of sea quarks using the HISQ action Jack Laiho Syracuse University April 31, 2015 Motivation The muon anomalous magnetic moment is currently measured

More information

arxiv: v1 [hep-lat] 23 Nov 2018

arxiv: v1 [hep-lat] 23 Nov 2018 B c spectroscopy using highly improved staggered quarks arxiv:1811.09448v1 [hep-lat] 23 Nov 2018 INFN, Sezione di Roma Tor Vergata, Via della Ricerca Scientifica 1, 00133 Roma RM, Italy E-mail: andrew.lytle@roma2.infn.it

More information

arxiv: v1 [hep-lat] 12 Sep 2016

arxiv: v1 [hep-lat] 12 Sep 2016 Neutral Kaon Mixing Beyond the Standard Model with n f = 2 + 1 Chiral Fermions Part 1: Bare Matrix Elements and Physical Results N. Garron a, R.J. Hudspith b, A.T. Lytle c a Theoretical Physics Division,

More information

PROTON DECAY MATRIX ELEMENTS FROM LATTICE QCD. Yasumichi Aoki RIKEN BNL Research Center. 9/23/09 LBV09 at Madison

PROTON DECAY MATRIX ELEMENTS FROM LATTICE QCD. Yasumichi Aoki RIKEN BNL Research Center. 9/23/09 LBV09 at Madison PROTON DECAY MATRIX ELEMENTS FROM LATTICE QCD Yasumichi Aoki RIKEN BNL Research Center 9/23/09 LBV09 at Madison Plan low energy matrix elements for N PS,l GUT QCD relation what is exactly needed to calculate

More information

The kaon B-parameter from unquenched mixed action lattice QCD

The kaon B-parameter from unquenched mixed action lattice QCD The kaon B-parameter from unquenched mixed action lattice QCD Christopher Aubin Department of Physics, Columbia University, New York, NY, USA Department of Physics, College of William and Mary, Williamsburg,

More information

Charmed Bottom Mesons from Lattice QCD

Charmed Bottom Mesons from Lattice QCD Charmed Bottom Mesons from Lattice QCD Nilmani Mathur Department of Theoretical Physics Tata Institute of Fundamental Research, India Collaborators : ILGTI, M. Padmanath, R. Lewis Lattice 2016, University

More information

Lattice QCD Christine Davies University of Glasgow, HPQCD collaboration. Lepton-photon 2007 Daegu, Korea

Lattice QCD Christine Davies University of Glasgow, HPQCD collaboration. Lepton-photon 2007 Daegu, Korea Lattice QCD 2007 Christine Davies University of Glasgow, HPQCD collaboration Lepton-photon 2007 Daegu, Korea QCD is key part of SM but quark confinement tricky a Lattice QCD enables calcn of QCD effects

More information

Phenomenology with Lattice NRQCD b Quarks

Phenomenology with Lattice NRQCD b Quarks HPQCD Collaboration 16 July 2015 Our approaches to b quarks In Glasgow, we take two complementary approaches to b quarks: Nonrelativistic QCD and heavy HISQ. Here I will focus exclusively on NRQCD (for

More information

Cascades on the Lattice

Cascades on the Lattice Cascade Physics - Jlab 2005 Cascades on the Lattice Kostas Orginos College of William and Mary - JLab LHP Collaboration LHPC collaborators R. Edwards (Jlab) G. Fleming (Yale) P. Hagler (Vrije Universiteit)

More information

The Future of V ub. Antonio Limosani JSPS Fellow (KEK-IPNS JAPAN) BMN BNM Tsukuba (KEK) Sep Antonio Limosani KEK Slide 1

The Future of V ub. Antonio Limosani JSPS Fellow (KEK-IPNS JAPAN) BMN BNM Tsukuba (KEK) Sep Antonio Limosani KEK Slide 1 The Future of V ub Antonio Limosani JSPS Fellow (KEK-IPNS JAPAN) 2010 2006 BMN 2006 BNM Tsukuba (KEK) Sep 13-14 2006 Antonio Limosani KEK Slide 1 Motivation Fundamental parameter in SM L SM =...+ gw µ

More information

Lattice QCD calculation of direct CP violation and long distance effects in kaon mixing and rare decays

Lattice QCD calculation of direct CP violation and long distance effects in kaon mixing and rare decays Lattice QCD calculation of direct CP violation and long distance effects in kaon mixing and rare decays Department of Physics, Columbia University, New York, NY 10027, USA E-mail: nhc@phys.columbia.edu

More information

Measurement of the CKM Sides at the B-Factories

Measurement of the CKM Sides at the B-Factories Measurement of the CKM Sides at the B-Factories Wolfgang Menges On behalf of the BaBar and Belle Collaborations Queen Mary, University of London, UK CKM matrix and Unitarity Triangle Semileptonic B decays

More information

arxiv: v1 [hep-lat] 7 Oct 2007

arxiv: v1 [hep-lat] 7 Oct 2007 Charm and bottom heavy baryon mass spectrum from lattice QCD with 2+1 flavors arxiv:0710.1422v1 [hep-lat] 7 Oct 2007 and Steven Gottlieb Department of Physics, Indiana University, Bloomington, Indiana

More information

PoS(LATTICE 2013)487. Vacuum polarization function in N f = 2+1 domain-wall fermion. Eigo Shintani. Hyung-Jin Kim

PoS(LATTICE 2013)487. Vacuum polarization function in N f = 2+1 domain-wall fermion. Eigo Shintani. Hyung-Jin Kim Vacuum polarization function in N f = 2+1 domain-wall fermion PRISMA Cluster of Excellence, Institut für Kernphysik and Helmholtz Institute Mainz, Johannes Gutenberg-Universität Mainz, D-55099 Mainz, Germany

More information

Copyright 2012 The Authors.

Copyright 2012 The Authors. n Basak, S. et al. (2012) Electromagnetic contributions to pseudoscalar masses. In: 7th International Workshop on Chiral Dynamics, 6-10 August 2012, Jefferson Lab, Newport News, Virginia, USA. Copyright

More information

DAMTP, University of Cambridge HPQCD

DAMTP, University of Cambridge HPQCD Outline of Talk Phenomenological Motivation Overview of lattice methodology Results Future work -Motivation The CKM Matrix After EW symmetry breaking the standard model in the mass basis contains the flavour

More information

Chiral perturbation theory with physical-mass ensembles

Chiral perturbation theory with physical-mass ensembles Chiral perturbation theory with physical-mass ensembles Steve Sharpe University of Washington S. Sharpe, Future of ChPT for LQCD 5/19/16 @ TUM-IAS EFT workshop 1 /35 ChPT for LQCD: Does it have a future?

More information

Lattice QCD calculation of nucleon charges g A, g S and g T for nedm and beta decay

Lattice QCD calculation of nucleon charges g A, g S and g T for nedm and beta decay 1 / 49 Lattice QCD calculation of nucleon charges g A, g S and g for nedm and beta decay Boram Yoon Los Alamos National Laboratory with. Bhattacharya, V. Cirigliano, R. Gupta, H. Lin PNDME Collaboration

More information

High Precision. Charm Physics. HISQ quarks

High Precision. Charm Physics. HISQ quarks f % f K High Precision m Charm Physics $ with m N m Ds m D m D * HISQ quarks - m s D s m " - m #c "(1P-1S) 2m Bs,av -m! Christine m Davies Bc E. Follana, G. P. Lepage, R. Horgan, K. Hornbostel, C. McNeile,

More information

Hadron Structure from Lattice QCD

Hadron Structure from Lattice QCD Hadron Structure from Lattice QCD Huey-Wen Lin University of Washington 1 Outline Lattice QCD Overview Nucleon Structure PDF, form factors, GPDs Hyperons Axial coupling constants, charge radii... Summary

More information

PoS(LATTICE 2013)001. Quark Flavor Physics Review

PoS(LATTICE 2013)001. Quark Flavor Physics Review Physics Department, University of Illinois, Urbana, Illinois 61801, USA Theoretical Physics Department, Fermilab, Batavia, IL 60510, USA E-mail: axk@illinois.edu I review the status of lattice-qcd calculations

More information

arxiv: v1 [hep-lat] 20 Mar 2014

arxiv: v1 [hep-lat] 20 Mar 2014 arxiv:1403.5252v1 [hep-lat] 20 Mar 2014 Physics Department, University of Illinois, Urbana, Illinois 61801, USA E-mail: axk@illinois.edu I review the status of lattice-qcd calculations relevant to quark

More information

Unquenched spectroscopy with dynamical up, down and strange quarks

Unquenched spectroscopy with dynamical up, down and strange quarks Unquenched spectroscopy with dynamical up, down and strange quarks CP-PACS and JLQCD Collaborations Tomomi Ishikawa Center for Computational Sciences, Univ. of Tsukuba tomomi@ccs.tsukuba.ac.jp 4th ILFTN

More information

PoS(EPS-HEP2011)179. Lattice Flavour Physics

PoS(EPS-HEP2011)179. Lattice Flavour Physics Rome University Tor Vergata" and INFN sez. Rome Tor Vergata" E-mail: nazario.tantalo@roma.infn.it I briefly discuss recent lattice calculations of a selected list of hadronic matrix elements that play

More information

Measuring V ub From Exclusive Semileptonic Decays

Measuring V ub From Exclusive Semileptonic Decays Measuring V ub From Exclusive Semileptonic Decays Lauren Hsu Cornell University The Lake Louise Winter Institute February 00 1 The Cabibbo-Kobayashi-Maskawa Matrix This matrix describes the (SM) weak couplings

More information

Kaon semileptonic decay form factors with HISQ valence quarks

Kaon semileptonic decay form factors with HISQ valence quarks Kaon semileptonic decay form factors with HISQ valence quarks a, Jon A. Bailey b, A. Bazavov c, C. Bernard d, C. Bouchard e, C. DeTar f, D. Du g, A.X. El-Khadra g, J. Foley f, E.D. Freeland h, Steven Gottlieb

More information

Flavour Physics Lecture 1

Flavour Physics Lecture 1 Flavour Physics Lecture 1 Chris Sachrajda School of Physics and Astronomy University of Southampton Southampton SO17 1BJ UK New Horizons in Lattice Field Theory, Natal, Rio Grande do Norte, Brazil March

More information

The Lattice QCD Program at Jefferson Lab. Huey-Wen Lin. JLab 7n cluster

The Lattice QCD Program at Jefferson Lab. Huey-Wen Lin. JLab 7n cluster The Lattice QCD Program at Jefferson Lab Huey-Wen Lin JLab 7n cluster 1 Theoretical Support for Our Experimental Agenda 2 Theoretical Support for Our Experimental Agenda JLab Staff Joint appointments and

More information

The QCD Equation of State at μ B > 0 from Lattice QCD

The QCD Equation of State at μ B > 0 from Lattice QCD The QCD Equation of State at μ B > 0 from Lattice QCD Hiroshi Ohno (BNL-Bielefeld-CCNU Collaboration) CCS, University of Tsukuba Brookhaven National Laboratory arxiv:1701.04325 [hep-lat] 7 th Workshop

More information

arxiv: v1 [hep-lat] 25 Sep 2014

arxiv: v1 [hep-lat] 25 Sep 2014 Finite-volume effects and the electromagnetic contributions to kaon and pion masses arxiv:1409.7139v1 [hep-lat] 25 Sep 2014 S. Basak a, A. Bazavov b, c, C. DeTar d, E. Freeland e, J. Foley d, Steven Gottlieb

More information

SUPA, School of Physics and Astronomy, University of Glasgow, Glasgow, G12 8QQ, UK

SUPA, School of Physics and Astronomy, University of Glasgow, Glasgow, G12 8QQ, UK SUPA, School of Physics and Astronomy, University of Glasgow, Glasgow, G12 8QQ, UK School of Mathematics, Trinity College, Dublin 2, Ireland E-mail: donaldg@tcd.ie Christine Davies SUPA, School of Physics

More information

Meson Baryon Scattering

Meson Baryon Scattering Meson Baryon Scattering Aaron Torok Department of Physics, Indiana University May 31, 2010 Meson Baryon Scattering in Lattice QCD Calculation of the π + Σ +, and π + Ξ 0 scattering lengths Aaron Torok

More information

Heavy quark physics with light dynamical quarks (plus a lot of other stuff) Christine Davies

Heavy quark physics with light dynamical quarks (plus a lot of other stuff) Christine Davies Heavy quark physics with light dynamical quarks (plus a lot of other stuff) Christine Davies University of Glasgow HPQCD and UKQCD collaborations Key aim of HPQCD collabn: accurate calcs in lattice QCD,

More information

B Physics Beyond CP Violation

B Physics Beyond CP Violation B Physics Beyond CP Violation Semileptonic B Decays Masahiro Morii Harvard University MIT LNS Colloquium, 2004 Outline Introduction: Why semileptonic B decays? CP violation Unitarity Triangle V ub vs.

More information

Lessons for New Physics from CKM studies

Lessons for New Physics from CKM studies Lessons for New Physics from CKM studies Indiana University Flavor Physics and CP violation, 010 Università di Torino, May 5-8, 010 Outline Flavor violation in the Standard Model Inputs to the unitarity

More information

Color screening in 2+1 flavor QCD

Color screening in 2+1 flavor QCD Color screening in 2+1 flavor QCD J. H. Weber 1 in collaboration with A. Bazavov 2, N. Brambilla 1, P. Petreczky 3 and A. Vairo 1 (TUMQCD collaboration) 1 Technische Universität München 2 Michigan State

More information

The nucleon mass and pion-nucleon sigma term from a chiral analysis of lattice QCD world data

The nucleon mass and pion-nucleon sigma term from a chiral analysis of lattice QCD world data The nucleon mass and pion-nucleon sigma term from a chiral analysis of lattice QCD world data L. Alvarez-Ruso 1, T. Ledwig 1, J. Martin-Camalich, M. J. Vicente-Vacas 1 1 Departamento de Física Teórica

More information

Lecture 12 Weak Decays of Hadrons

Lecture 12 Weak Decays of Hadrons Lecture 12 Weak Decays of Hadrons π + and K + decays Semileptonic decays Hyperon decays Heavy quark decays Rare decays The Cabibbo-Kobayashi-Maskawa Matrix 1 Charged Pion Decay π + decay by annihilation

More information

QCDOC A Specialized Computer for Particle Physics

QCDOC A Specialized Computer for Particle Physics QCDOC A Specialized Computer for Particle Physics Supercomputers for Science across the Atlantic May 19, 2005 Norman H. Christ Columbia University Outline Physics overview Computer design opportunities

More information

Baryonic Spectral Functions at Finite Temperature

Baryonic Spectral Functions at Finite Temperature Baryonic Spectral Functions at Finite Temperature Masayuki Asakawa Department of Physics, Osaka University July 2008 @ XQCD 2008 QCD Phase Diagram T LHC 160-190 MeV 100MeV ~ 10 12 K RHIC crossover CEP(critical

More information

arxiv: v2 [hep-lat] 26 Sep 2012

arxiv: v2 [hep-lat] 26 Sep 2012 Edinburgh 1/1 TCDMATH 1-6 Neutral kaon mixing beyond the standard model with n f = + 1 chiral fermions arxiv:16.5737v [hep-lat] 6 Sep 1 P. A. Boyle, 1 N. Garron, 1, and R. J. Hudspith 1 (The RBC and UKQCD

More information

Inclusive radiative electroweak penguin decays:

Inclusive radiative electroweak penguin decays: Inclusive radiative electroweak penguin decays: b sγ University of Melbourne E-mail: luis.pesantez@coepp.org.au The inclusive radiative decay b sγ is a flavor-changing-neutral-current that proceeds through

More information

Recent results on CKM/CPV from Belle

Recent results on CKM/CPV from Belle Recent results on CKM/CPV from Belle Alexander Leopold for the Belle Collaboration Insitute of High Energy Physics Austrian Academy of Sciences HEPMAD 15, September 21 st 2015 A. Leopold (HEPHY) Belle

More information

V cb : experimental and theoretical highlights. Marina Artuso Syracuse University

V cb : experimental and theoretical highlights. Marina Artuso Syracuse University V cb : experimental and theoretical highlights Marina Artuso Syracuse University 1 The method b q W - e, µ, ν c or u q τ Ultimate goal: a precise determination of V cb The challenge: precise evaluation

More information

Moriond QCD La Thuile, March 14 21, Flavour physics in the LHC era. An introduction. Clara Matteuzzi. INFN and Universita Milano-Bicocca

Moriond QCD La Thuile, March 14 21, Flavour physics in the LHC era. An introduction. Clara Matteuzzi. INFN and Universita Milano-Bicocca Moriond QCD La Thuile, March 14 21, 2009 Flavour physics in the LHC era An introduction Clara Matteuzzi INFN and Universita Milano-Bicocca 1 Contents 1. The flavor structure of the Standard Model 2. Tests

More information

Shahram Rahatlou University of Rome

Shahram Rahatlou University of Rome Cabibbo-Kobayashi-Maskawa Matrix and CP Violation in Standard Model Shahram Rahatlou University of Rome Lecture 1 Lezioni di Fisica delle Particelle Elementari Many thanks to Vivek Sharma (UCSD) And Achille

More information

First results for two-flavor QCD with light quarks

First results for two-flavor QCD with light quarks First results for two-flavor QCD with light quarks Leonardo Giusti CERN - Theory Group CERN L. Giusti Nara November 2005 p.1/30 Outline Flavor physics with lattice QCD The Berlin wall in full QCD simulations

More information

National Nuclear Physics Summer School Lectures on Effective Field Theory. Brian Tiburzi. RIKEN BNL Research Center

National Nuclear Physics Summer School Lectures on Effective Field Theory. Brian Tiburzi. RIKEN BNL Research Center 2014 National Nuclear Physics Summer School Lectures on Effective Field Theory I. Removing heavy particles II. Removing large scales III. Describing Goldstone bosons IV. Interacting with Goldstone bosons

More information

Semileptonic B decays at BABAR

Semileptonic B decays at BABAR at (University of Oregon) representing collaboration March 4, 4 1.5 excluded area has

More information

Recent V ub results from CLEO

Recent V ub results from CLEO Recent V ub results from CLEO Marina Artuso Representing the CLEO Collaboration Beauty 2005, Assisi, June 20-25, 2005 1 Quark Mixing Weak interaction couples weak eigenstates, not mass eigenstates: CKM

More information

Deconfinement at high temperatures and moderately high baryon densities Péter Petreczky

Deconfinement at high temperatures and moderately high baryon densities Péter Petreczky Deconfinement at high temperatures and moderately high baryon densities Péter Petreczky What is the limiting temperature on hadronic matter? What is the nature of the deconfined matter? In this talk: Chiral

More information

Recent CP violation measurements. Advanced topics in Particle Physics: LHC physics, 2011 Jeroen van Tilburg 1/38

Recent CP violation measurements. Advanced topics in Particle Physics: LHC physics, 2011 Jeroen van Tilburg 1/38 Recent CP violation measurements Advanced topics in Particle Physics: LHC physics, 2011 Jeroen van Tilburg 1/38 Recap of last week What we have learned last week: Indirect searches (CP violation and rare

More information

The Gell-Mann Okubo Mass Relation among Baryons from Fully-Dynamical, Mixed-Action Lattice QCD

The Gell-Mann Okubo Mass Relation among Baryons from Fully-Dynamical, Mixed-Action Lattice QCD NT@UW-06-08 JLAB-xxxx UNH-06-02 The Gell-Mann Okubo Mass Relation among Baryons from Fully-Dynamical, Mixed-Action Lattice QCD Silas R. Beane, 1, 2 Kostas Orginos, 3, 2 and Martin J. Savage 4 (NPLQCD Collaboration)

More information

Transverse Momentum Distributions of Partons in the Nucleon

Transverse Momentum Distributions of Partons in the Nucleon Lattice 2008, Williamsburg 2008-07-18 Transverse Momentum Distributions of Partons in the Nucleon Bernhard Musch Technische Universität München presenting work in collaboration with LHPC and Philipp Hägler

More information

Is the up-quark massless? Hartmut Wittig DESY

Is the up-quark massless? Hartmut Wittig DESY Is the up-quark massless? Hartmut Wittig DESY Wuppertal, 5 November 2001 Quark mass ratios in Chiral Perturbation Theory Leutwyler s ellipse: ( mu m d ) 2 + 1 Q 2 ( ms m d ) 2 = 1 25 m s m d 38 R 44 0

More information

Nucleon structure from 2+1-flavor dynamical DWF ensembles

Nucleon structure from 2+1-flavor dynamical DWF ensembles Nucleon structure from 2+1-flavor dynamical DWF ensembles Michael Abramczyk Department of Physics, University of Connecticut, Storrs, CT 06269, USA E-mail: michael.abramczyk@uconn.edu Meifeng Lin Computational

More information

Probing the Chiral Limit in 2+1 flavor Domain Wall Fermion QCD

Probing the Chiral Limit in 2+1 flavor Domain Wall Fermion QCD Probing the Chiral Limit in 2+1 flavor Domain Wall Fermion QCD Meifeng Lin for the RBC and UKQCD Collaborations Department of Physics Columbia University July 29 - August 4, 2007 / Lattice 2007 @ Regensburg

More information

Standard Model of Particle Physics

Standard Model of Particle Physics Standard Model of Particle Physics Chris Sachrajda School of Physics and Astronomy University of Southampton Southampton SO17 1BJ UK SUSSP61, St Andrews August 8th 23rd 2006 Contents 1. Spontaneous Symmetry

More information

Precise determination of the lattice spacing in full lattice QCD

Precise determination of the lattice spacing in full lattice QCD Precise determination of the lattice spacing in full lattice QCD None of these quantities can be computed as accurately as r 1 /a in simulations, but we can combine simulation rearxiv:0910.1229v1 [hep-lat]

More information

arxiv: v1 [hep-lat] 27 Feb 2017

arxiv: v1 [hep-lat] 27 Feb 2017 arxiv:1703.00392v1 [hep-lat] 27 Feb 2017 School of Physics an Astronomy,University of Einburgh, EH9 3FD, Einburgh, UK E-mail: J.R.Kettle-2@sms.e.ac.uk Peter Boyle School of Physics an Astronomy,University

More information

SM & BSM Hadronic Matrix Elements heavy mesons and nucleons. Yasumichi Aoki (RBRC) RIKEN

SM & BSM Hadronic Matrix Elements heavy mesons and nucleons. Yasumichi Aoki (RBRC) RIKEN SM & BSM Hadronic Matrix Elements heavy mesons and nucleons Yasumichi Aoki (RBRC) 9/25/2010 @ RIKEN RBC/UKQCD collaboration RBC: RIKEN-BNL-Columbia collaboration (>10 years) Japan-US Lattice collaboration:

More information

Towards Exploring Parity Violation with Lattice QCD. Towards Exploring Parity Violation with Lattice QCD. Brian Tiburzi 30 July 2014 RIKEN BNL

Towards Exploring Parity Violation with Lattice QCD. Towards Exploring Parity Violation with Lattice QCD. Brian Tiburzi 30 July 2014 RIKEN BNL Towards Exploring Parity Violation with Lattice QCD Brian Tiburzi 30 July 2014 RIKEN BNL Research Center Towards Exploring Parity Violation with Lattice QCD Towards Exploring Parity Violation with Lattice

More information

Lattice QCD Calculations for Quark Flavor Physics. Matthew Wingate Institute for Nuclear Theory University of Washington

Lattice QCD Calculations for Quark Flavor Physics. Matthew Wingate Institute for Nuclear Theory University of Washington Lattice QCD Calculations for Quark Flavor Physics Matthew Wingate Institute for Nuclear Theory University of Washington work done with A. Gray, E. Gulez, J. Shigemitsu (Ohio State) C. T. H. Davies (Glasgow)

More information

Leading-order hadronic contribution to the anomalous magnetic moment of the muon from N f = twisted mass fermions

Leading-order hadronic contribution to the anomalous magnetic moment of the muon from N f = twisted mass fermions Leading-order hadronic contribution to the anomalous magnetic moment of the muon from N f = 2 + 1 + 1 twisted mass fermions Grit Hotzel 1 in collaboration with Florian Burger 1, Xu Feng 2, Karl Jansen

More information

The HL-LHC physics program

The HL-LHC physics program 2013/12/16 Workshop on Future High Energy Circular Collider 1 The HL-LHC physics program Takanori Kono (KEK/Ochanomizu University) for the ATLAS & CMS Collaborations Workshop on Future High Energy Circular

More information

Mass Components of Mesons from Lattice QCD

Mass Components of Mesons from Lattice QCD Mass Components of Mesons from Lattice QCD Ying Chen In collaborating with: Y.-B. Yang, M. Gong, K.-F. Liu, T. Draper, Z. Liu, J.-P. Ma, etc. Peking University, Nov. 28, 2013 Outline I. Motivation II.

More information

CP Violation and Rare Decays of K and B Mesons

CP Violation and Rare Decays of K and B Mesons TUM-HEP-349/99 May 1999 CP Violation and Rare Decays of K and B Mesons Andrzej J. Buras Technische Universität München Physik Department D-85748 Garching, Germany Abstract These lectures describe CP violation

More information

Parton Physics and Large Momentum Effective Field Theory (LaMET)

Parton Physics and Large Momentum Effective Field Theory (LaMET) Parton Physics and Large Momentum Effective Field Theory (LaMET) XIANGDONG JI UNIVERSITY OF MARYLAND INT, Feb 24, 2014 Outline Wilson s unsolved problem Large-momentum effective field theory (LaMET) An

More information

Electromagnetic Form Factors

Electromagnetic Form Factors Electromagnetic Form Factors Anthony W. Thomas Workshop on Exclusive Reactions, JLab : May 24 th 2007 Electron Scattering Provides an Ideal Microscope for Nuclear Physics Electrons are point-like The interaction

More information

Hadronic B decays from SCET. Christian Bauer LBNL FPCP 2006, Vancouver

Hadronic B decays from SCET. Christian Bauer LBNL FPCP 2006, Vancouver Hadronic B decays from SCET Christian Bauer LBNL FPCP 2006, Vancouver Outline of the Talk Introduction Hadronic B deays in SCET Phenomenology of Hadronic B decays Conclusions Introduction Flavor Physics

More information

Heavy Quarks and τ. CVC test Michel parameters. Charm Mixing f D s

Heavy Quarks and τ. CVC test Michel parameters. Charm Mixing f D s Heavy Quarks and τ University of Illinois CVC test Michel parameters Charm Mixing f D s B f B Two mysteries: N c and η K CKM: ππ, Kπ, V cb, V ub Lifetime and mixing CP search Belle and Babar* A very brief

More information

Hadronic light-by-light contribution to the muon g-2 from lattice QCD+QED

Hadronic light-by-light contribution to the muon g-2 from lattice QCD+QED Hadronic light-by-light contribution to the muon g-2 from lattice QCD+QED Tom Blum (University of Connecticut, RIKEN BNL Research Center) with Christopher Aubin (Fordham) Saumitra Chowdhury (UConn) Masashi

More information

The Gell-Mann Okubo Mass Relation among Baryons from Fully-Dynamical Mixed-Action Lattice QCD

The Gell-Mann Okubo Mass Relation among Baryons from Fully-Dynamical Mixed-Action Lattice QCD NT@UW-06-08 JLAB-THY-06-484 UNH-06-02 arxiv:hep-lat/0604013v1 16 Apr 2006 The Gell-Mann Okubo Mass Relation among Baryons from Fully-Dynamical Mixed-Action Lattice QCD Silas R. Beane, 1,2 Kostas Orginos,

More information

arxiv:hep-lat/ v1 5 Oct 2006

arxiv:hep-lat/ v1 5 Oct 2006 arxiv:hep-lat/6141v1 5 Oct 26 Singlet Free Energies and the Renormalized Polyakov Loop in full QCD for RBC-Bielefeld collaboration Niels Bohr Institute E-mail: kpetrov@nbi.dk We calculate the free energy

More information

V cb. Determination of. and related results from BABAR. Masahiro Morii, Harvard University on behalf of the BABAR Collaboration

V cb. Determination of. and related results from BABAR. Masahiro Morii, Harvard University on behalf of the BABAR Collaboration Determination of and related results from BABAR V cb Masahiro Morii, Harvard University on behalf of the BABAR Collaboration V cb from inclusive B semileptonic decays Lepton energy moments Hadron mass

More information

Scalar leptoquarks from GUT to accommodate the B-physics anomalies

Scalar leptoquarks from GUT to accommodate the B-physics anomalies Scalar leptoquarks from GUT to accommodate the B-physics anomalies Nejc Košnik Nejc Košnik (JSI, Univ. of Ljubljana) Corfu Summer Institute 018.9.018 1 / 18 Lepton universality violation in charged and

More information

Determination of running coupling αs for N f = QCD with Schrödinger functional scheme. Yusuke Taniguchi for PACS-CS collaboration

Determination of running coupling αs for N f = QCD with Schrödinger functional scheme. Yusuke Taniguchi for PACS-CS collaboration Determination of running coupling αs for N f = 2 + QCD with Schrödinger functional scheme Yusuke Taniguchi for PACS-CS collaboration Purpose of this project Determine the fundamental parameter of N f =

More information

Observation of Large CP Violation in the Neutral B Meson System

Observation of Large CP Violation in the Neutral B Meson System Observation of Large CP Violation in the Neutral B Meson System Presentation for PHY7357 final exam Yefan Tao Phys.Rev.Lett.87:091802,2001 Background: In 1973, Kobayashi and Maskawa(KM) proposed quark

More information

Particle physics today. Giulia Zanderighi (CERN & University of Oxford)

Particle physics today. Giulia Zanderighi (CERN & University of Oxford) Particle physics today Giulia Zanderighi (CERN & University of Oxford) Particle Physics Particle Physics is fundamental research, as opposed to many applied sciences (medicine, biology, chemistry, nano-science,

More information