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CLIC work packages CTF3-003 (TBL+) CLIC0-001 (CLIC DB injector)

CLIC work packages CTF3-003 (TBL+) CLIC0-001 (CLIC DB injector) CLIC0-002 (photo injector option for CLIC DB injector. CTF3-003. CTF3 future plans, TBL+. Using the TBL line for structure processing,

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CLIC work packages CTF3-003 (TBL+) CLIC0-001 (CLIC DB injector)

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  1. CLIC work packages CTF3-003(TBL+) CLIC0-001(CLIC DB injector) CLIC0-002(photo injector option for CLIC DB injector

  2. CTF3-003

  3. CTF3 future plans, TBL+ Using the TBL line for structure processing, How could it look like, need modified tanks with an input coupler and testing infra structure (supports + waveguide components)

  4. CTF3 future plans, TBL+ Modified tank with input coupler keeping 800 mm length PETS ‘conceptual’

  5. Plans for TBL beyond 2012 What can be done with TBL+ • Develop conditioning scenario for CLICconditioning with beam / use of ON/OFF mechanism of PETS precondition with klystron and then with beam conditioning of PETS • Test bed for PETS development, ON/OFF, new designs, etc • Power production as a function of beam parametersalignment, stability, pulse shape, phase stability, beam loses, failure modes • Continue decelerator beam dynamics studies

  6. CLIC0-001

  7. CLIC0-001

  8. Future plans beyond CTF3 CLIC DB injector Solenoids Thermionic gun Buncher SHB Prebuncher Accelerating cavity 6 MeV Slit 26 MeV 53 MeV Starting to build ‘real’ CLIC hardware with the right frequency and beam parameters Test bed to develop, the 1 GHz power sources for the CLIC drive beam and to study the stability of the very long train

  9. Very rough schedule

  10. CLIC01-002

  11. Photo injector option • Advantages • No satellites or tails, phase coding on the laser side • No or less bunching needed, possibly better emittance • Flexible time structure • Concerns • Cathode lifetime • Challenging laser, peak and average power • Intensity stability • Maintenance and operation

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