Contribution to a conference proceedings/Contribution to a book PUBDB-2022-04230

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FLASH2020+ Upgrade - Modification of RF Power Waveguide Distribution for the Free-electron Laser FLASH at DESY

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2022
JACoW Publishing, Geneva, Switzerland [Geneva]
ISBN: 978-3-95450-215-8

Proceedings of the 31st International Linear Accelerator Conference, LINAC2022, Liverpool, UK
31st International Linear Accelerator Conference, LINAC2022, LiverpoolLiverpool, UK, 28 Aug 2022 - 2 Sep 20222022-08-282022-09-02
[Geneva] : JACoW Publishing, Geneva, Switzerland 747-749 () [10.18429/JACoW-LINAC2022-THPOPA01]  GO

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Abstract: The goal of FLASH2020+ upgrade is to increase the energy of the FLASH accelerator, which allows the use of even shorter wavelengths, which, in turn, will allow new research. For this purpose, during the shutdown in 2022, two superconducting accelerator modules for ACC2 and ACC3 will be replaced by new ones. To fully realize the potential of these cryomodules XFEL type of waveguide distributions will be installed on them. In addition, the existing ACC4 and ACC5 cryomodules will also be equipped with the new waveguide distributions, similar XFEL type. These waveguide distributions will be modified and improved so that the machine can operate with the maximum energy due to individual power supply for each cavity. Furthermore, three RF stations will receive a new klystron waveguide distribution, which will improve the reliability of all systems. The specific waveguide distributions have been developed, produced and tested at the Waveguide Assembly and Test Facility (WATF) at DESY. All together will lead to increasing the electron beam energy from 1.25 to 1.35 GeV. This paper presents data on the production and tuning of waveguide distribution systems for the FLASH2020+ upgrade at DESY.

Keyword(s): Accelerator Physics ; Electron Accelerators and Applications ; GUI ; cryomodule ; cavity ; klystron ; FEL


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Contributing Institute(s):
  1. MHFp (MHFp)
Research Program(s):
  1. 621 - Accelerator Research and Development (POF4-621) (POF4-621)
Experiment(s):
  1. FLASH 2020+ Project

Appears in the scientific report 2022
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Creative Commons Attribution CC BY 4.0 ; OpenAccess
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 Record created 2022-08-04, last modified 2022-11-22


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