CERN Accelerating science

Article
Report number arXiv:1610.05699 ; NAPAC-2016-TUA3CO03
Title Compact ring-based X-ray source with on-orbit and on-energy laser-plasma injection
Related titleCompact ring-based X-ray source with on-orbit and on-energy laser-plasma injection
Author(s) Turner, Marlene (CERN) ; Cheatam, Jeremy (Colorado State U.) ; Edelen, Auralee (Colorado State U.) ; Gerity, James (Texas A-M) ; Lajoie, Andrew (Michigan State U., NSCL) ; Lawler, Gerard (UCLA) ; Lishilin, Osip (DESY) ; Moon, Kookjin (UNIST, Ulsan) ; Sahai, Aakash Ajit (JAI, UK) ; Seryi, Andrei (JAI, UK) ; Shih, Kai (SUNY, Stony Brook) ; Wong, Chun Yan Jonathan (Michigan State U.) ; Zerbe, Brandon
Publication 2017-01
Imprint 17 Oct 2016
Number of pages 4
Note 4 pages, 1 figure, Conference Proceedings of NAPAC 2016
In: 2016 North American Particle Accelerator Conference, Chicago, IL, USA, 9 - 14 Oct 2016, pp.TUA3CO03
DOI 10.18429/JACoW-NAPAC2016-TUA3CO03
Subject category physics.acc-ph ; Accelerators and Storage Rings
Abstract We report here the results of a one week long investigation into the conceptual design of an X-ray source based on a compact ring with on-orbit and on-energy laser-plasma accelerator. We performed these studies during the June 2016 USPAS class "Physics of Accelerators, Lasers, and Plasma..." applying the art of inventiveness TRIZ. We describe three versions of the light source with the constraints of the electron beam with energy $1\,\rm{GeV}$ or $3\,\rm{GeV}$ and a magnetic lattice design being normal conducting (only for the $1\,\rm{GeV}$ beam) or superconducting (for either beam). The electron beam recirculates in the ring, to increase the effective photon flux. We describe the design choices, present relevant parameters, and describe insights into such machines.
Copyright/License arXiv nonexclusive-distrib. 1.0, CC-BY-3.0



Corresponding record in: Inspire


 Zapis kreiran 2016-10-20, zadnja izmjena 2024-12-04


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