PPT-JLAB LCLS II Prototype Cryomodule Microphonics
Author : ruby | Published Date : 2023-09-22
Tom Powers March 2 2017 Background on Microphonics The structural vibrations which cause microphonic frequency shifts are the same independent of the loadedQ From
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JLAB LCLS II Prototype Cryomodule Microphonics: Transcript
Tom Powers March 2 2017 Background on Microphonics The structural vibrations which cause microphonic frequency shifts are the same independent of the loadedQ From a vibrational response standpoint and . Sean . Kalsi. on behalf of SLAC MCC operations group, WAO August 8, 2012 . 2. Outline. LCLS FEL WOA 2012. Free Electron Lasers. LCLS Overview. Deliverable X-Ray Parameters. Setting Up the Machine. 27. th. May 2014. Satoshi N Nakamura, . Tohoku University. HKS. HES. Results from Hall-C. Nuclear Force. Lots of NN scattering data. Nuclear Structure. Normal/Exotic nuclei. Established Calculation Tech.. HXR . Undulator. Tor Raubenheimer. Based on studies by . M. Rowen, H.D. Nuhn and Juhao Wu. LCLS-II Accelerator Parameters. parameter. symbol. nominal. range. unit. Electron energy. E. f. 13.5. 4.2 - 14. Jamie Blowers. LCLS-II EDM/PLM Applications. 31-Mar-2014. Outline. QA/QC “first principles”. Fermilab QA, Procurement, and Engineering . framework. QA/QC staff and function infrastructure. Process control software infrastructure, Vector. 27 January 2015. Zachary Conway. On behalf of the ANL Linac Development Group. Argonne National Laboratory. Physics Division. Overview. FY2015 Scope of Work.. Recent Progress.. Prototype Cavity Cold Test Results.. Ari Palczewski. Jefferson National laboratory. 6/30/2016. Overall Plan – Three Basic Steps. Evaluate existing materials using single cells to identify problem (JLab). Using single cells, develop possible recipe modifications and test (FNAL). Cost and . Optimization. Based Jlab energy upgrade . Cryomodule design and produced to increase the energy gain of CEBAF to 12 GeV in 5 ½ passes. Increases the energy gain of each linac with 5 new cryomodules. meeting. U Cornell, 06/11-06/14/2013. Ithaca. , NY . Experience with high loaded Q cavity operation at HZB. Test set up: Horizontal test facility . HoBiCaT. Testing fully equipped cavities including. Brian Hartsell. Shipping Review. June 12. th. , 2018. 2. General Shipping Configuration & Procedure. Procedure from a high level:. Electrical and RF checks. Beamline vacuum monitor installed. Adapters installed into HGRP. 25 April 2019. VT/CM Performance for Flux Expulsion. LCLS-II cryomodule production in partnership with teams at FNAL, . JLab. , and SLAC. All cryomodule measurements shown here are by FNAL LCLS-II team. Concept Design Study. Niklas Templeton. RFD Pre-Series Update . - . CC Coordination Meeting - 18/8/17. RFD Dressed Cavity Status. Fixed from RFD SPS Concept:. Cavity. Cold Magnetic Shield. To be updated from SPS Cryomodule:. Satish. Joshi. Raja . Ramanna. Centre for Advanced Technology, Indore, India. Outline. Prototype 1.3 GHz single Cell cavity. Single cell . Nb. 1.3 GHz cavity development. Development of Cavity Processing Facility. Tom Nicol – Fermilab. May 8, 2014. 1. It’s a group effort – Many thanks to. Jean . Delayen, . HyeKyoung Park. , Subashini De . Silva, Rocio Olave at ODU. Sergey Belomestnykh. , Qiong . Wu, Silvia . X.F. Huang, Y. .B. Zhao, X. Zheng, Z.G. Zhang, K. Xu, . S.J.. . Zhao,. . H.R. Jiang, W.F. Yang, H. Wu, H.L. Wu, Y.C Yu. . Shanghai Advanced Research Institute. CAS. 2023.10.25. 1 Overview of.
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