novel DIagnostic Techniques for future particle Accelerators: A Marie Curie Initial Training NETwork

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1 novel Iagnostic Techniques for future particle Accelerators: A Marie Curie Initial Training NETwork Carsten P. Welsch - On behalf of the ITANET Consortium -

2 Outline What is ITANET? Involvement of Industry Research Training What does it mean to you?

3 A typical Monitor OTR Light Camera Material sciences Thermodynamics Electro-Magnetism Optics Mechanics Electronics Nuclear Physics Multi-disciplinary field!

4 What is ITANET? One of the largest Marie Curie Initial Training Networks ever funded by European Union! unding for 20 fellows (17 ESR and 3 ER) Gives industry an important role! Allows for inter-sectorial collaboration! Recognized importance of beam diagnostics at European level! (in physics top 12, 2007 under extreme competition)

5 The ITANET Consortium Network Participants Associated Partners

6 Including Partners rom Industry

7 Including Partners rom Industry

8 Examples from the Research Program XEL CT3 (L)AIR

9 The XEL Project K. Wittenburg

10 Wire Scanners..established for measurements in accelerators. Advantages: Resolution:1 µm Reliable irect K. Wittenburg

11 Challenge: Heat Load on Wire de dx = 2 2 4π nz e 2m c ln 2 2 mec β 4πε0 I e β 2 β ( 2 β ) T = C de dx d' N c p 1 G [ C] T max ~ 2000 C N = d' f v rev NB n ( ) Bunch Required: Speed of m/s with 1 µm resolution. K. Wittenburg

12 CT3 - Overview Thermionic gun Linac L CR 2007 Photo injector / laser tests from GHz production (PETS line) and test stand CLEX building in 2006 TL UMP UMP UMP ITB 16 m TBTS UMP TBL LIL-ACS 23.2 m 3.0m 3.0m TL2 1.4 m LIL-ACS LIL-ACS CALIES probe beam injector UMP G. Blair, E. Bravin, T.Lefevre

13 CT3: An Ideal Testing Platform Time-resolved spectroscopy Beam Halo Monitoring Simulation of CR; 1,0E-01 compare to measurements Beam position monitors ITB instrumention G. Blair, E. Bravin, T.Lefevre Time evolution of the beam energy spread Normalized Intensity 1,0E-02 Measured on girder7 1,0E Beam transient 1,0E-03 1,0E-04 1,0E-05 1,0E-06 Steady state Position [µm] SpectraCAM 600s M CC Camera, O4

14 acility for Antiproton and Ion Research 30 MeV kev 300 kev - 20 kev kev -... ev

15 USR - Challenges Injection E= 20 kev 300 kev Atomic beam + Reaction microscope Vacuum < mbar iagnostics at 4K ions 2 ns C beams e - cooler - Photocathode - E~ 1 mev Quasar.uni-hd.de

16 Training Local training by host Network-wide schools on diagnostic techniques Inter-network exchange of researchers Secondments to partners from industry Training in complementary skills Motivation: Ideal Training.

17 Outreach ITANET schools in 03/2009 (London) and 09/2010 (Stockholm) ITANET conferences in 2009 and 2011 (IPAC?!) Mini-Symposia, workshops throughout 4 years Open to external participants.

18 What ITANET means to you ITANET.uni-hd.de Young Researcher Supervisor Scientist Join in!

19 Conclusion Unique opportunity to push our field evelopments through joint effort between research centers, Universities and the private sector; Innovative approach to training of young researchers; Many events interesting for whole community; Stimulation of research careers in beam diagnostics. Please take a copy!!!

20 USR - Goals Variable to lowest energies 300 kev ~ 20 kev High luminosity for in-ring experiments Well-defined extracted beams: Small emittance Small momentum spread Multi-user operation: 2 straight sections for in-ring experiments Slow and fast extraction Additional beam lines possible Central requirements t ~ 500 nsec for Injection in traps t ~ 2 nsec / 10 4 ions for collision studies T Rev (pbar; 20keV) = 15 µsec Umfang = 30 m 4 mm

21 Management Structure Supervisory Board One representative of each network participant and associated partner Associated Partners European Commission Network Coordinator Steering Committee Elected from network participants and associated partners Management Office Spin-off Board ITANET Participant 1 ITANET Participant 2 ITANET Participant 9 ITANET Participant 10

22 Research evelopment of beam diagnostic techniques for future particle accelerators (LHC, AIR, XEL, and small-scale projects) Interdisciplinary approach Close collaboration with partners from industry Aim:XXX

23 Research: Work Packages Transverse Beam Profile Particle etection Longitudinal Beam Profile Current Position Electronics

24 Measurement (1) Aquire profile (2) efine core (4) Re-Measure (3) Generate mask

25 Recruitment Strategy After After acceptance + 6 weeks End End June June + 4 weeks Soon Soon thereafter inal efinition Publication of Positions Screening of Applications Interviews and Selection Board ecision of all career development plans. ormalizing secondments and time schedule. ITANET kickoff meeting online and in relevant international journals. irect contact to prospective candidates. Criteria: letter of intent, academic records, two letters of recommendation In case several candidates are eligible: Selection board Criteria: international competition, direct comparison between applicants. Ensure gender balance, equal opportunities to candidates from within/outside network. Based on agreement between host team, thematic partners and coordinator. Goal ill all positions until september 2008.

26 Auswahl von Kandidaten

novel DIagnostic Techniques for future particle Accelerators: A Marie Curie Initial Training NETwork

novel DIagnostic Techniques for future particle Accelerators: A Marie Curie Initial Training NETwork novel Iagnostic Techniques for future particle Accelerators: A Marie Curie Initial Training NETwork Carsten P. Welsch - On behalf of the ITANET Consortium - c.welsch@gsi.de Outline What is ITANET? Network

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