Planning the AWA run schedule 1.Do experiments as quickly as possible 2.Deliver meaningful results Goals of this discussion (planning) (priorities) Improve.

Slides:



Advertisements
Similar presentations
High Brightness Electron Source Lab.
Advertisements

C. Rossi – L4 Project Meeting 3 March 2011 Status and Plans of 3 MeV Test Stand.
Chris Tennant Jefferson Laboratory March 15, 2013 “Workshop to Explore Physics Opportunities with Intense, Polarized Electron Beams up to 300 MeV”
High Gradients in Dielectric Loaded Wakefield Structures Manoel Conde High Energy Physics Division Argonne National Laboratory AAC 08 – Santa Cruz, CA.
FAC review, 10/27 D. Schultz 1 e-Beams System Update Injector System Installation has started. Linac System Preparing for ’06 installation. Controls System.
1 Low-energy RHIC electron Cooler (LEReC) Update November 17, 2014.
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.
CTF3 commissioning status R. Corsini - CTF3 committee 17 th September 2009 Update on CTF3 Operations and schedule This time I will try to give a more complete.
Gamma Beam Systems a simple introduction. Purpose of the machine Deliver a high performance photon beam: Variable energy Highly polarized High intensity.
ILCTA_NML Progress at Fermilab Jerry Leibfritz September 10, 2007.
7.8GHz Dielectric Loaded High Power Generation And Extraction F. Gao, M. E. Conde, W. Gai, C. Jing, R. Konecny, W. Liu, J. G. Power, T. Wong and Z. Yusof.
Generation and Characterization of Magnetized Bunched Electron Beam from DC Photogun for MEIC Cooler Laboratory Directed Research and Development (LDRD)
Dielectric Wakefield Accelerator for an X-ray FEL User Facility
Low Emittance RF Gun Developments for PAL-XFEL
~ gun3.9 GHz cavity Bunch compressor 3 ILC cryomodules 45 deg. spectro injector main linac user area disp. area transport line Overview of.
HINS 6-Cavity Test 3 Month Plan Jan 12, Current Schedule 2-3 day shutdown scheduled to start Jan 18 (Wednesday) to upgrade BPM system and reinstall.
Development of Dielectric PETS Chunguang Jing and Wei Gai ANL and Euclid CLIC workshop 2013.
G 0 Coordinator Update & “To-Do List” Joe Grames William & Mary, June 5-6, 2006  Hall C Beam Line Tasks  Accelerator Preparation Tasks  Beam Halo 
2014 AWA Experiments managed by Jing --- updated on 2/25/2014 Experiment 1: 11.7GHz metallic DL Experiment 2: 91GHz metallic Experiment.
R. Corsini, CLIC Project Meeting October 24, 2012 CTF3 Experimental program for end 2012 R. Corsini for the CTF3 Team 1.
1 Plan and Opportunities for Migration and Integration of the Photoinjector into New Muon Lab Mike Church AAC Review - 12/5/06.
F Photoinjector for the ILC test facility at Fermilab Sergei Nagaitsev Fermilab May 24, 2007.
Project X Injector Experiment (PXIE) Sergei Nagaitsev Dec 19, 2011.
Global design effort DOE meeting 8/10/06 Global design effort Americas 1 FY07 DOE ILC Budget recommendations G. Dugan ILC-GDE/Cornell University GDE Americas.
Recent Euclid Wakefield AWA C. Jing, S. Antipov, A. Kanareykin, P. Schoessow, Euclid Techlabs, LLC M. Conde, W. Gai, W. Liu, J. Power, Z.
MTA RF Status 01/31/ 2007 NF&MCC Meeting UCLA A. Moretti.
CLIC work packages CTF3-003 (TBL+) CLIC0-001 (CLIC DB injector) CLIC0-002 (photo injector option for CLIC DB injector.
Electron Sources for ERLs – Requirements and First Ideas Andrew Burrill FLS 2012 “The workshop is intended to discuss technologies appropriate for a next.
Christopher Gerth DL/RAL Joint Workshop 28-29/4/04 Modelling of the ERLP injector system Christopher Gerth ASTeC, Daresbury Laboratory.
ICFA Workshop on Novel Concepts for Linear Accelerators and Colliders. SLAC, July Euclid Techlabs LLC DIELECTRIC BASED HG STRUCTURES: POWER EXTRACTION,
Erik Adli CLIC Project Meeting, CERN, CH 1 Erik Adli Department of Physics, University of Oslo, Norway Input from: Steffen Doebert, Wilfried Farabolini,
Tuning Techniques And Operator Diagnostics for FACET at SLAC National Accelerator Laboratory Chris Melton SLAC Accelerator Operations.
1 CTF3 CLEX day July 2006 CLEX day 2006 Introduction G.Geschonke CERN.
MEF - Machines & Experimental Facilities March 2013 Project meeting Activities in Linac4 tunnel and building in 2013 March 2013 Project meeting 14/03/2013J.Coupard1.
The Upgraded Argonne Wakefield Accelerator Facility (AWA)
Development of High Current Bunched Magnetized Electron DC Photogun MEIC Collaboration Meeting Fall 2015 October 5 – 7, 2015 Riad Suleiman and Matt Poelker.
Advanced Accelerator R & D Activities at ANL-HEP Wei Gai (for the AWA group)
S.V. Shchelkunov, J.L Hirshfield, (Yale Univ., Omega-P), T.C. Marshall (Columbia Univ., Omega-P) G. Sotnikov (KIPT, Ukraine, & Omega-P) in collaboration.
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.
1. Baseline – from LMC  Presentation by F. Bordry at LHC Machine Committee 5.10 on LS1 Organisation: 1. Linac4 is not going to be connected.
Feasibility and R&D Needed For A TeV Class HEP e+e- Collider Based on AWA Technology Chunguang Jing for Accelerator R&D Group, HEP Division, ANL Aug
Operated by Los Alamos National Security, LLC for NNSA Dmitry Yu. Shchegolkov, Evgenya I. Simakov Los Alamos National Laboratory, Los Alamos, NM
Readiness for RF capture Cavities – all 16 cavities commissioned with RF feedback loops closed klystron polar loop still to commission on 2 cavities 2.
Bunch Shaping for Future Dielectric Wakefield Accelerators W. Gai Mini-Workshop on Deflecting/Crabbing RF Cavity Research and application in Accelerators.
AWA Overview and Activities Dan Wang for Wei Gai ANL HEP AWA CLIC workshop 2016.
Operation Status of the RF Systems and Taiwan Photon Source
Multi-bunch Operation for LCLS, LCLS_II, LCLS_2025
MuCool Test Area Dedicated facility built at the end of the Linac to address MuCool needs RF power 805MHz, 201MHz)
PIs: Riad Suleiman and Matt Poelker
Sara Thorin, MAX IV Laboratory
Dielectric accelerators in Microwave regime and a short pulse collider concept Chunguang jing AWA & Euclid Techlabs AWLC2017 June, 2017.
CLEX* Status and Plans CTF3 complex CLEX
BE/RF-IS Contribution to LIU C. Rossi and M. Paoluzzi
Cesium Telluride Photocathode Preparation at Argonne
Brief Review of Microwave Dielectric Accelerators
Joint Accelerator Research JGU & HZB
Revised Commissioning Strategy
LCLS Injector: Introduction D. H
LINAC4 commissioning plans etc.
ATF 120 Hz Photocathode RF Gun Injection System Design Studies
LAL meeting on e+ studies, Oct. 2010
Advanced Research Electron Accelerator Laboratory
Linac/BC1 Commissioning P
Linac (WBS 1.2.2) Vinod Bharadwaj April 23, 2002
VELA – CLARA AP (Draft) Goals Software Goals
LCLS Injector System Overview D. H
Proposal for Smith-Purcell radiation experiment at SPARC_LAB
Yuhong Zhang MEIC Collaboration Meeting March 30 & 31, 2015
PIs: Riad Suleiman and Matt Poelker
Presentation transcript:

Planning the AWA run schedule 1.Do experiments as quickly as possible 2.Deliver meaningful results Goals of this discussion (planning) (priorities) Improve communication & Clarify roles Strategy

Timeline for Upgrades and Initial Experiments Jul 2012 Oct 2012 Jan 2013 Apr 2013 Jul 2013 Oct 2013 Jan 2014 commission first new linac tank & generate high charge bunch trains with new gun civil construction, electrical, etc move and flip witness gun run experiments using witness beam install & commission beamline switchyard start experiments with new drive beam install & commission more linac tanks New linac tanks delivered 75 MeV beam Presented to DOE: March 2013

AWA SUPPORT SYSTEMS AWA Facility – Conde a)Overall Coordination & Schedule – Conde b)Utilities and infrastructure – Doran c)Vacuum/Beamline installation – Wisniewski d)Laser – Power e)1.3 GHz LLRF – Jing f)Modulator/Klystron – Liu g)Diagnostic – Power h)Cathode – Wisniewski i)Beamline Physics Design – Power j)Beamline Mechanical Design – Doran k)Control system – Liu System  mini-group leader

AWA PROJECTS DL: High Q, 19 MeV Train (Measure: Current, Flatness) DL: High Q, 75 MeV Single Bunch (Measure: charge, energy, bunch length, emittance ) DL: High Q, 75 MeV Train, (Measure: Charge Flatness, Energy Droop) DL: 11.7GHz metallic wakefield power extractor(16x60nC) DL: 26GHz Dielectric Based Wakefield Power Extractor with BBU solenoid (16x20nC) WL: Ring beam and coaxial two channel structure WL: EEX based bunch shaping Many more… *Each project is assigned a PI by Wei

High Q, 19 MeV Train High Q, 75 MeV Single Bunch High Q, 75 MeV Train 11.7GHz metallic PETS 26GHz Dielectric PETS Experimental Schedule Utilities and infrastructure Vacuum/Beam line installation Laser 1.3 GHz LLRF Modulator/Kly stron Diagnostic Beamline Physics Design Beamline Mechanical Design Control system Match systems to projects

Experimental planning strategy PI makes a to-do list To-do list divided up into AWA SYSTEMS AWA SYSTEMS lead makes a to-do list AWA SYSTEMS lead gives job assignments Weekly open meetings PI makes a to-do list To-do list divided up into AWA SYSTEMS AWA SYSTEMS lead makes a to- do list AWA SYSTEMS lead gives job assignments Weekly open meetings 1.Set Priorities 2.Name a PI for a project 3.Establish deliverables for the project Wei 

Meetings 1.AWA group meeting 1.Frequency: Weekly 2.Purpose: discuss plan for that week 3.Participants: everyone 2.Project meetings (PI initiated) 1.Frequency: As needed (weekly in begin) 2.Purpose: discuss plan for that week 3.Participants: as required 3.System meetings (system lead initiated) 1.Frequency: As needed (weekly in begin) 2.Purpose: discuss plan for that week 3.Participants: as required 4.Priorities Meeting (called by Wei) 1.Frequency: As needed?? Monthly?? Quarterly?? 2.Purpose: Are we going in the right direction? Review AWA schedule 3.Participants: as required

PRIORITIES (highest level meeting) 1.Demonstrate 1 GW 2.Witness gun experiments 1.Ring beam 2.coaxial two channel structure 2nd run 3.Demonstrate the high current drive beam in the new AWA drive beamline 4.Can we get 1 GW with minimal diagnostics. (deflecting cavity, emittance, energy?) 5.Purchase EEX equipment 6.Clean and install EEX beamline 7.Installation of LLRF feedback 8.Improvement of Modulator 9.Improvement of Control System 10.Improvement of Multisplitter