PPT-LFD compensation for high-gradient cryomodule
Author : fanny | Published Date : 2024-01-29
Presented by Yuriy Pischalnikov TTC2018 Milan Italy WG4 February 8 2018 Eacc 35MVm Open loop operation Piezo OFF Piezo ON The walls of SCRF cavities are deliberately
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LFD compensation for high-gradient cryomodule: Transcript
Presented by Yuriy Pischalnikov TTC2018 Milan Italy WG4 February 8 2018 Eacc 35MVm Open loop operation Piezo OFF Piezo ON The walls of SCRF cavities are deliberately kept thin ltseveral mm to allow the cavities to . focused on SPL cavity tests. V. Benda, O. Pirotte, B. Vullierme. SM 18 layout, . current status . 19.10.2010. SPL cryomodule CRG/VB. 2. 6 kW . Linde. RF cavity. Magnet test benches CFBs. Bloc 4 + FCM + SC Link. David Atkinson:. I have no . relevant financial interest or relationship . to disclose with regard to the subject matter of this presentation.. Motion Compensation Strategies. David Atkinson. . . D.Atkinson@ucl.ac.uk. 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.. 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. In the Compensation Training, we will discuss the details on ANR’s Compensation strategies and how it relates to new hires, merits, and other employment issues.. What the compensation process entails. CW Operation of XFEL Modules Outline Limitations of the XFEL cryo module for high duty cycle and CW Module tests Dynamic heat load for the cw operation Dynamic heat load measurements vs. duty factor 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. Significant progress has been made over the past decade by studies of normal-conducting linear colliders, NLC/JLC and CLIC, to raise achievable accelerating gradient from the range of 20-30 MV/m up to 100-120 MV/m. . International Workshop on Breakdown Science and High Gradient Technology. KEK, Japan. 18 April 2012. Toshi Higo. Contents . Status of . Japan and KEK . under recovery. Normal conducting . X-band studies . 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 . : . status and update. (from SPL to HG). With the contribution of . Katarzyna. . Turaj. , Karim Gibran Hernandez . Chahin. , . Alick. Macpherson, . Sotirios. Papadopoulos, Julien Pascal . Dequaire. Sesimbra. Portugal, March 2019. Laser Beam Physics. Laura Corner. Cockcroft Institute for Accelerator Science. Liverpool University, UK. CERN Accelerator School. High Gradient Wakefield Accelerators. in . XFEL . Cryomodule Tests. Denis Kostin, . DESY. . . TTC Topical . Meeting . on SRF Cryomodule Clean Room . Assembly. . 12-14.11.2014. Outline. Cavity Operating Gradient and Degradation. XFEL Module AMTF Test .
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