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

Slides:



Advertisements
Similar presentations
PETS components and waveguide connections CLIC Workshop 2007 David Carrillo.
Advertisements

Areal RF Station A. Vardanyan RF System The AREAL RF system will consist of 3 RF stations: Each RF station has a 1 klystron, and HV modulator,
Areal RF Station A. Vardanyan RF System The AREAL RF system will consist of 3 RF stations: Each RF station has a 1 klystron, and HV modulator,
Planning the AWA run schedule 1.Do experiments as quickly as possible 2.Deliver meaningful results Goals of this discussion (planning) (priorities) Improve.
Before aperture After aperture Faraday Cup Trigger Photodiode Laser Energy Meter Phosphor Screen Solenoids Successful Initial X-Band Photoinjector Electron.
Bob Lill Undulator Systems – BPM April 20, 2006 Undulator Cavity BPM Status and Plans.
Bob Lill Undulator Cavity BPM System April 16, 2007 Undulator Cavity BPM Status.
R. Corsini, CLIC Project Meeting - 24 th May 2013 CTF3 1 CTF3: Highlights of the 1 st run R. Corsini for the CTF3 Team 1.
Different mechanisms and scenarios for the local RF
Alessandro Cappelletti for CTF3 collaboration 5 th May 2010 RESULTS OF BEAM BASED RF POWER PRODUCTION IN CTF3.
CLIC Drive Beam Linac Rolf Wegner. Outline Introduction: CLIC Drive Beam Concept Drive Beam Modules (modulator, klystron, accelerating structure) Optimisation.
Test Facilities Sami Tantawi SLAC. Summary of SLAC Facilities NLCTA (3 RF stations, one Injector, one Radiation shielding) – Two 240ns pulse compressor,
K. Alam, CLIC workshop, October 16-18, CLIC workshop, October 2007 Working group “ Two beam hardware and integration” Test module in the two.
F. Toral CLIC Workshop CIEMAT contribution to CLIC Experimental Verification F. Toral on behalf of Accelerator Technology Group, CIEMAT.
ILCTA_NML Progress at Fermilab Jerry Leibfritz September 10, 2007.
AWAKE electron source New Electron Source WP at CERN
R&D proposals for EuCard 2 EuCard2, April 21Steffen Döbert, BE-RF  SRF basic research (W. Weingarten)  CTF3 and CTF3+, possible infra - structure for.
Providing Beams for Power Production What has been done Problems and Boundary Conditions Future improvements and possibilities.
R&D Programme for RT Phase Feedback Giulio Morpurgo.
X-Band RF Structure and Beam Dynamics Workshop, December 2008 CERN experience with 12 GHz high power waveguide components Igor Syratchev (CERN)
TBL as a 12 GHz power source, overview and first results from commissioning IWLC 2010 workshopSteffen Döbert, BE-RF  Current status of TBL  Status of.
Development of Dielectric PETS Chunguang Jing and Wei Gai ANL and Euclid CLIC workshop 2013.
 High Power RF Systems (352 MHZ - 12 GHz)  High Efficiency Power Sources  High Voltage Systems  High Gradient Accelerating Structures.
R. Corsini, CLIC Project Meeting October 24, 2012 CTF3 Experimental program for end 2012 R. Corsini for the CTF3 Team 1.
1 CTF3 collaboration meeting 2007 G.Geschonke Status Status of CTF3 G.Geschonke CERN.
CLIC TDR Task Force CLIC Zero, cost & schedule considerations R. Corsini.
Ding Sun and David Wildman Fermilab Accelerator Advisory Committee
Project X Injector Experiment (PXIE) Sergei Nagaitsev Dec 19, 2011.
CTF3 Probe Beam G. A. Blair Royal Holloway Univ. London CTF3 Meeting, CERN 30 th November 2005 Introduction – UK Context Draft Proposal Future prospects.
Summary of progress towards CLIC goals and next steps for structure testing 6 th X-band collaboration workshop, April 18 th- 20 th 2012 Steffen Döbert,
ParameterL-bandS-bandX-band Length (m) Aperture 2a (mm) Gradient (Unloaded/Loaded) (MV/m)17/1328/2250/40 Power/structure (MW) Beam.
1 R. Corsini – CLIC Project Meeting CTF3 Update CTF3 Update R. Corsini for the CTF3 Team 1.
TBTS Test Program & Schedule G. Riddone
Introdcution to Workpackage/Activity Reflection D. Schulte.
Injector Options for CLIC Drive Beam Linac Avni Aksoy Ankara University.
1 CTF3 CLEX day July 2006 CLEX day 2006 Introduction G.Geschonke CERN.
S. Bettoni, R. Corsini, A. Vivoli (CERN) CLIC drive beam injector design.
1 The next steps – focusing points Define the scope, strategy and cost of the project implementation. Main input: The evolution of the physics findings.
Interface between TAC SR and SASE FEL Possibility for testing CLIC structure Avni AKSOY Ankara University.
1 CTF3 collaboration meeting 2007 G.Geschonke Status Status of CTF3 G.Geschonke CERN.
CLIC Workshop 2008 TBTS status. PETS testing program and installation status. Igor Syratchev & Germana Riddone for the CLIC team.
CLIC DB injector facility, photo-injector option studies LCWS, Granada, September 26 th -30 th,2011Steffen Döbert, BE-RF  CLIC DB injector  Thermionic.
ILCTA_NML Progress at Fermilab Jerry Leibfritz August 16, 2007.
High-efficiency L-band klystron development for the CLIC Drive Beam High-efficiency L-band klystron development for the CLIC Drive Beam CLIC workshop,
Status of CTF3 G.Geschonke 1CTF3/CLIC Collaboration Board
Status and plans of drive beam components and tests Status and plans of drive beam components and tests CLIC review, March 1 st, 2016Steffen Döbert, BE-RF.
Status of the sub-harmonic bunching system for the CLIC DB injector front end Hamed Shaker School of Particles and Accelerators, Institute for Research.
TBL experimental program, evolution to RF power testing in TBL ACE 2011, February 2-3Steffen Döbert, BE-RF  Current status of TBL  Experimental program.
Areal RF Station A. Vardanyan
Work packages : Overview of experimental verification, CTF3 and CLIC Zero R. Corsini for the CLIC/CTF3 Collaboration Basically all WP scientific and.
PHIL: A TEST BEAMLINE AT LAL Specifications of PHIL
CLIC DB injector front end update on the work package
Abstract EuSPARC and EuPRAXIA projects
CLEX* Status and Plans CTF3 complex CLEX
Status of the CLIC main beam injectors
Ideas for medium and long term facility upgrade Roberto Corsini for the CLIC Accelerator Collaboration.
Have a chance to operate your own beam at CERN
Brief Review of Microwave Dielectric Accelerators
12 GHz High Power RF components requirements for CEA activities
DC Injector and Space Charge Simulation Status
Task 2: High-gradient normal-conducting technology development
Measurements, ideas, curiosities
ERL BPM System Mike Billing, Mark Palmer
CEPC RF Power Sources System
LCLS Gun Commissioning Status & Plans David H
Advanced Research Electron Accelerator Laboratory
Linac LLP Outline LINAC Long Lead Procurements
CLIC Feasibility Demonstration at CTF3
J. Seeman Perugia Super-B Meeting June 2009
小型X線源の性能確認実験計画 高輝度・RF電子銃研究会 広島大学 高エネルギー加速器研究機構 浦川順治
Presentation transcript:

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, How could it look like, need modified tanks with an input coupler and testing infra structure (supports + waveguide components)

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

Plans for TBL beyond 2012 What can be done with TBL+  Develop conditioning scenario for CLIC conditioning 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 parameters alignment, stability, pulse shape, phase stability, beam loses, failure modes  Continue decelerator beam dynamics studies

CLIC0-001

CLIC0-001

P REBUNCHER B UNCHER S LIT A CCELERATING CAVITY 53 MeV 6 MeV 26 MeV SHB S OLENOIDS Future plans beyond CTF3 CLIC DB injector T HERMIONIC GUN 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

Very rough schedule Task Building Identify building prepare building +infrastructure ready for first installations Gun conceptual design purchase gun and HV supplyInstall and testready to use SHB Buncherdesignprototypefabricationinstallation 500 MHz power sourceIdentifypurchase power sourcereceptioninstallation Buncherdesigndesign + purchasefabricationinstallation 1 GHz structuredesigndesign + purchase prototype+ fabrication test prototype+series production Solenoids design + purchasefabricationinstallation Quads+Dipoles design + purchasefabricationready to install Vacuum system design + purchasefabricationinstallation Diagnostis specs+designfabricationinstallation Controls specs+designpreparationinstallation LLRF specs+designfabricationinstallation 1 GHz klystronsspecificationpurchase prototypefabricationReceive 1st prototypeKlystron 2+3Klystron GHz Modulatorspecifiactionspurchase first MDKfabricationReceive 1st MDMD 2+3MD 4+5 GUN GUN + bunching system7 MeV linac13 MeV linac

CLIC01-002

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