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RIS citation export for THPAB069: Design Concepts for a High-Gradient C-Band Linac

TY  - CONF
AU  - Bolin, T.B.
AU  - Biedron, S.
AU  - Cary, J.R.
AU  - Dal Forno, M.
AU  - Sosa Guitron, S.I.
ED  - Liu, Lin
ED  - Byrd, John M.
ED  - Neuenschwander, Regis T.
ED  - Picoreti, Renan
ED  - Schaa, Volker R. W.
TI  - Design Concepts for a High-Gradient C-Band Linac
J2  - Proc. of IPAC2021, Campinas, SP, Brazil, 24-28 May 2021
CY  - Campinas, SP, Brazil
T2  - International Particle Accelerator Conference
T3  - 12
LA  - english
AB  - During the last decade, the production of soft to hard x-rays (up to 25 keV) at XFEL facilities has enabled new developments in a broad range of disciplines. One caveat is that these instruments can require a large amount of real estate. For example, the XFEL driver is typically an electron beam linear accelerator (LINAC) and the need for higher electron beam energies capable of generating higher energy X-rays can require longer linacs; costs quickly become prohibitive, requiring state of art methods. One cost-saving measure is to produce a high accelerating gradient while reducing cavity size. Compact accelerating structures are also high-frequency. Here, we describe design concepts for a high-gradient, cryo-cooled LINAC for XFEL facilities in the C-band regime (~4-8 GHz). We are also exploring C-band for different applications including drivers for security applications. We investigate 2 different traveling wave (TW) geometries optimized for high-gradient operation as modeled with VSim software.
PB  - JACoW Publishing
CP  - Geneva, Switzerland
SP  - 3919
EP  - 3921
KW  - cavity
KW  - FEL
KW  - electron
KW  - linac
KW  - accelerating-gradient
DA  - 2021/08
PY  - 2021
SN  - 2673-5490
SN  - 978-3-95450-214-1
DO  - doi:10.18429/JACoW-IPAC2021-THPAB069
UR  - https://jacow.org/ipac2021/papers/thpab069.pdf
ER  -