Beyond the Standard Model Phenomenology. DOE Review 2008 Progress Report. Shufang Su U. of Arizona

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1 Beyond the Standard Model Phenomenology DOE Review 2008 Progress Report Shufang Su U. of Arizona S. Su DOE Review, 2008

2 Low energy Precision measurement LEP Experiments Tevatron (now) LC LHC (2008( 2008) e + e p p p p S. Su DOE Review,

3 Data from sky: WMAP, supernovae, sky survey, Low energy Precision measurement LEP Experiments Tevatron (now) LC LHC (2008( 2008) e + e p p p p S. Su DOE Review,

4 We live in a fascinating time when rich data is / will be available My work focuses on searching for new physics beyond the SM S. Su DOE Review,

5 We live in a fascinating time when rich data is / will be available My work focuses on searching for new physics beyond the SM Involve experiments in Nuclear physics Particle physics Astrophysics/Cosmology S. Su DOE Review,

6 We live in a fascinating time when rich data is / will be available My work focuses on searching for new physics beyond the SM Involve experiments in Nuclear physics Particle physics Astrophysics/Cosmology Direct Searches S. Su DOE Review,

7 We live in a fascinating time when rich data is / will be available My work focuses on searching for new physics beyond the SM Involve experiments in Nuclear physics Particle physics Astrophysics/Cosmology Direct Searches Indirect Searches S. Su DOE Review,

8 We live in a fascinating time when rich data is / will be available My work focuses on searching for new physics beyond the SM Involve experiments in Nuclear physics Particle physics Astrophysics/Cosmology Dark Matter Direct Searches Indirect Searches S. Su DOE Review,

9 Students and Postdoc Postdoc Brooks Thomas (group postdoc, 2 nd year) Graduate Students Ethan Dolle (6 th year) Xinyu Miao (5 th year) Undergraduate Students Will Parker (Senior) Kara Farnsworth S. Su DOE Review,

10 Direct Searches for New Physics S. Su DOE Review,

11 Direct Searches for NP Phenomenology of the leftright twin Higgs models H.S. Goh (U. of Arizona) Phenomenology of the LeftRight Twin Higgs Models H.S. Goh, S. Su, Phys. Rev. D75 (2007) S. Su DOE Review,

12 Direct Searches for NP Phenomenology of the leftright twin Higgs models H.S. Goh (U. of Arizona) Phenomenology of the LeftRight Twin Higgs Models H.S. Goh, S. Su, Phys. Rev. D75 (2007) S. Su DOE Review,

13 Direct Searches for NP Phenomenology of the leftright twin Higgs models H.S. Goh (U. of Arizona) Phenomenology of the LeftRight Twin Higgs Models H.S. Goh, S. Su, Phys. Rev. D75 (2007) dd,ss,bb Z H decay Br (%) h!0 tt uu,cc TT tt l + l! " " l l!+!! Zh,W+W! ^ ^ ^ ^ h1h1,h2h2 10! (GeV) m ZH S. Su DOE Review,

14 Direct Searches for NP Phenomenology of the leftright twin Higgs models H.S. Goh (U. of Arizona) Phenomenology of the LeftRight Twin Higgs Models H.S. Goh, S. Su, Phys. Rev. D75 (2007) dd,ss,bb Z H decay Br (%) h!0 tt uu,cc TT tt l + l! " " l l!+!! Zh,W+W! ^ ^ ^ ^ h1h1,h2h2 10! (GeV) m ZH S. Su DOE Review,

15 Direct Searches for NP Discovery potential for the heavy top quark Xinyu Miao (U. of Arizona) Collider Studies of the Heavy Top Quark in the LeftRight Twin Higgs Models X. Miao and S. Su, in preparation. 3 b + 1 j + 1 lepton + missing E T b j Miao/Su b f (GeV) th φ ± t b W l ν S/ B σ before S σ after S σ after B ble 2: Results for the cascade decay of heavy top from S. Su DOE Review,

16 Direct Searches for NP Collider Signatures of Dark Matter in the IHDM E. Dolle, X. Miao, B. Thomas (U. of Arizona) Collider Signatures of Dark Matter in the IHDM A E. Dolle, S. Su, B. Thomas, X. Miao, in preparation δ 2 S δ1 H1 ± Sbottom in the SUSY Golden Region W. Parker (U. of Arizona) Discovery Sbottom in the SUSY Golden Region W. parker, S. Su, in preparation A Lepton Friendly Higgs Boson B. Thomas (U. of Arizona) H µµ in tth at the LHC A lepton Friendly Higgs Boson at the LHC B. Thomas, S. Su, in preparation S. Su DOE Review,

17 Indirect Searches for New Physics S. Su DOE Review,

18 Møller Scattering e e γ Z e e Purely leptonic Atomic Parity Violation e γ Z Cs 133 QWeak (JLab) e γ 1d S. Su DOE Review, Z Coherent quarks in P Results in ~2009 2(2C 1u +C 1d ) Coherent quarks in entire nucleus Nuclear structure uncertainties 376 C 1u 422 C 1d e W DISParity p n e γ Z Isoscaler quark scattering (2C 1u C 1d )+Y(2C 2u C 2d ) Neutrino Scattering ν µ ν + Quark scattering (from nucleus) Weak charged and neutral current difference Z e ν

19 Indirect Searches for NP Low Energy Precision Supersymmetry A. Kurylov (Caltech), M. RamseyMusolf (UW Madison), S. Tulin (Caltech) Supersymmetric Effects in Parity Violating Deep Inelastic Electron Nucleus Scattering A. Kurylov, M. RamseyMusolf, S. Su, Phys.Lett.B582:222228,2004. Probing Supersymmetry with Parity Violating Electron Scattering A. Kurylov, M. RamseyMusolf, S. Su, Phys.Rev.D68:035008,2003. Supersymmetric Effects in Deep Inelastic Neutrino Nucleus Scattering A. Kurylov, M. RamseyMusolf, S. Su, Nucl.Phys.B667:321348,2003. Pion Leptonic Decay and Supersymmetry M. RamseyMusolf, S. Su, S. Tulin, Phys. Rev. D 76 (2007) S. Su DOE Review,

20 Indirect Searches for NP Low Energy Precision Supersymmetry (cont ) Low Energy Precision Test of Supersymmetry M. RamseyMusolf, S. Su, Phys. Rept. 456 (2008) 1. Contents I. Introduction 1 II. Minimal Supersymmetric Extension of Standard Model 3 A. Introduction 3 B. The Minimal Supersymmetric Extension of Standard Model 5 C. Soft SUSY Breaking 7 D. Superparticle Spectrum 9 E. SUSY Interactions 13 F. Rparity Violating Interactions 15 G. SUSY Searches 17 H. The Muon Anomalous Magnetic Moment and SUSY 18 V. Neutral Current Experiments 61 A. Introduction 61 B. Parity Violating Electron Scattering: Møller and Qweak 64 C. ElectronDeuterium Parity Violating Deep Inelastic Scattering 70 D. Atomic Parity Violation 73 E. NeutrinoNuclei Deep Inelastic Scattering 74 VI. Flavor, CP, Neutrinos, and Cosmology 77 A. General Considerations 77 B. Lepton Flavor and Number Violation 81 C. R Parity Violation and Neutrino Mass 87 D. EDM Searches: Implications for SUSY 88 E. SUSY Baryogenesis and Dark Matter 96 III. Renormalization 24 A. Charged Current Processes 25 VII. Zpole Electroweak Precision Measurements 102 B. Neutral Current Processes 29 A. Precision Observables 102 C. Theoretical Uncertainties in Electroweak Radiative Corrections 36 B. SM Global Fit 104 C. MSSM Contributions to the Precision Observables 105 IV. Charged Current Processes 38 D. Global Analysis in the msugra and the GMSB 106 A. Muon Decay 39 VIII. The Experimental Limit on the MSSM Neutral Higgses 107 B. Semileptonic Decays of Light Quark Systems: General Considerations 43 C. Superallowed Nuclear Decays 52 IX. Conclusions and Outlook 110 D. βdecay Correlations 54 E. Pion βdecay 56 Acknowledgments 111 F. Kaon decays and V us 57 G. CKM Unitarity Tests: Implications for SUSY 59 References 111 S. Su DOE Review,

21 Indirect Searches for NP Electroweak precision analysis in various SUSY breaking scenarios S. Heinemeyer (Instituto de Fisica de Cantabria), X. Miao (U. of Arizona), G. Weiglein (Durham) B Physics Observables and Electroweak Precision Data in the CMSSM, mgmsb and mamsb S. Heinemeyer, X. Miao, S. Su and G. Weiglein, JHEP 08 (2008) BR(b > s!) CMSSM mgmsb mamsb tan! CMSSM all " 9 " 4 " M A [GeV] S. Su m~ t [GeV] DOE Review,

22 Indirect Searches for NP Electroweak precision analysis in AMSB K. Farnsworth (U. of Arizon), S. Heinemeyer (Instituto de Fisica de Cantabria), X. Miao (U. of Arizona), G. Weiglein (Durham) Distinguishing AMSB scenarios via Precision Observables K. Farnsworth, S. Heinemeyer, X. Miao, S. Su and G. Weiglein, work in progress SUSY contributions to the low energy/zpole observables J. Kyle (Brookhaven), M. RamseyMusolf (Madison), S. Tulin (Caltech) Analysis of Precision Observables in Supersymmetry J. Kyle, M. RamseyMusolf, S. Su and S. Tulin, in preparation. S. Su DOE Review,

23 Dark Matter Studies S. Su DOE Review,

24 Synthesis Remarkable agreement Remarkable precision (~10%) S. Su DOE Review,

25 Synergy S. Su DOE Review,

26 Synergy Collider Inputs Weakscale Parameters DM Annihilation DMN Interaction S. Su DOE Review,

27 Synergy Collider Inputs Weakscale Parameters DM Annihilation DMN Interaction Relic Density Indirect Detection Direct Detection Astrophysical and Cosmological Inputs S. Su DOE Review,

28 Synergy Collider Inputs Weakscale Parameters DM Annihilation DMN Interaction Relic Density Indirect Detection Direct Detection Astrophysical and Cosmological Inputs S. Su DOE Review,

29 Dark Matter Studies SuperWIMP Dark Matter J. Feng (UCIrvine), F. Takayama (DESY) Supergravity with a Gravitino LSP J. L. Feng, S. Su, F. Takayama, Phys.Rev. D70 (2004) SuperWIMP Gravitino Dark Matter from Slepton and Sneutrino Decays J. L. Feng, S. Su, F. Takayama, Phys.Rev. D70 (2004) WIMP superwimp + SM particles S. Su DOE Review,

30 Dark Matter Studies Dark Matter Production at Colliders J. Feng (UCIrvine), F. Takayama (DESY) Minimum Rates for Dark Matter Production at the Large Hadron Collider and International Linear Collider J. L. Feng, S. Su, F. Takayama, Phys. Rev. Lett. 96, (2006) DM f f DM Cross symmetry DM f f DM DM annihilation DM production Upper bound on Ω Lower bound on rates S. Su DOE Review,

31 Dark Matter Studies Dark Matter in the LeftRight Twin Higgs Models E. Dolle (U. of Arizona) Dark Matter in the LeftRight Twin Higgs Model E. Dolle and S. Su, Phys. Rev. D77 (2008) ! h ! h (GeV) M S (GeV) S. Su DOE Review, M S

32 Dark Matter Studies $ L Dark Matter in the Inert Higgs Doublet Model E. Dolle, B. Thomas, X. Miao (U. of Arizona) !0.25!0.5!0.75 Relic Density Analysis! Z E. Dolle and S. Su, in preparation forb. " h 2 =0.112 ± # 1 =50 GeV, # 2 =10 GeV, m h =120 GeV Intermediate Couplings 1<$ i <4% Unstable Solutions # L!0.75! h 2 =0.112 ± " 1 =2 GeV, " 2 =1 GeV, m h =120 GeV Intermediate Couplings 1<# i <4$ Unstable Solutions! !1 m [GeV] S m [GeV] S S. Su DOE Review, !0.25!0.5

33 Dark Matter Studies Dark Matter in the Inert Higgs Doublet Model (cont ) P. Agrawal(U. of Maryland), E. Dolle, C. Krenke (U. of Arizona) Signals of Inert Doublet Dark Matter in Neutrino Telescopes. P. Agrawal, E. Dolle and C. Krenke, arxiv: m H =200 GeV! 1 =50 GeV,! 2 =10 GeV m H =200 GeV! 1 =50 GeV,! 2 =10 GeV Events (km!2 yr!1 ) !1 10!2 10!3 10! Events (km!2 yr!1 ) !5 10!1 10!6 10! m S (GeV) 10! m S (GeV) S. Su DOE Review,

34 Dark Matter Studies Dark Matter in the Inert Higgs Doublet Model (cont ) E. Dolle (U. of Arizona) Indirect Detection via Gamma Rays E. Dolle and S. Su, in preparation 10!8 Had/Frag, J!"=1 High mass region, m H =120 GeV, (# 1,# 2 )=(2,1) GeV d%/de $ (photons cm!2 s!1 GeV!1 ) 10!10 10!12 10!14 10!16 10!18 10!20 GLAST limit HESS limit Veritas limit 10!22 10! E $ (GeV) S. Su DOE Review,

35 Organization of conferences/workshops Organize KITPC 2008 program: New physics beyond the Standard Model. Sep 1st Nov 21, International Organizing Committee: Tao Han, YuPing Kuang, Gordon Kane,Shufang Su,R. Sekhar Chivukula 12 weeks long program, budget of about $130 K (1M RMB) S. Su DOE Review,

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44 Organization of conferences/workshops Organizer for Aspen 2009 Summer Program: Beyond the Standard Model Physics at the Threshold July 5 August 9 Beyond the Standard Model Physics at the Threshold Organizers: Marcela Carena, Fermilab Herbi Dreiner, Bonn University. Germany Dan Hooper, Fermilab Markus Luty, University of California, Davis Shufang Su*, University of Arizona S. Su DOE Review,

45 Future Plans LHC related physics: understand what data really means Communicate (more) with our exp neighbor (LHC, ALTAS) Train students to work on LHC physics simulation tools for new physics and SM background experimental physics observables/ capabilities New physics phenomenology / distinguish various new physics Connection to cosmology New candidate for dark matter Collider studies of dark matter properties S. Su DOE Review,

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