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RIS citation export for MOPRB061: Simulations and Measurements of Coherent Synchrotron Radiation at the MAX-IV Short Pulse Facility

AU  - Kyle, B.S.
AU  - Appleby, R.B.
AU  - Brandin, M.
AU  - Mansten, E.
AU  - Pacey, T.H.
AU  - Thorin, S.
AU  - Williams, P.H.
AU  - Wolfenden, J.
ED  - Boland, Mark
ED  - Tanaka, Hitoshi
ED  - Button, David
ED  - Dowd, Rohan
ED  - Schaa, Volker RW
ED  - Tan, Eugene
TI  - Simulations and Measurements of Coherent Synchrotron Radiation at the MAX-IV Short Pulse Facility
J2  - Proc. of IPAC2019, Melbourne, Australia, 19-24 May 2019
CY  - Melbourne, Australia
T2  - International Particle Accelerator Conference
T3  - 10
LA  - english
AB  - The Coherent Synchrotron Radiation (CSR) interaction is a source of unwanted correlated energy spread in short-bunch Free-Electron Lasers (FEL), diluting the desired FEL spectrum and reducing the total brightness of the light source. Many accelerator codes make use of 1-dimensional approximations in the calculation of the CSR-wake, which breaks down for bunch dimensions typical within bunch compressor dipoles in FELs. General Particle Tracer simulations of the CSR interaction make use of the 3-dimensional bunch distribution, making it advantageous in modelling the short-bunch, high aspect ratio regimes typical of modern 4th-generation light sources. Measurements of THz CSR emitted from the final bunch compressor dipole of the SP02 beamline at the MAX-IV Short Pulse Facility (SPF) were used, alongside start-to-end GPT and Elegant simulations, to characterize coherent radiation emission across a broad range of bunch lengths.
PB  - JACoW Publishing
CP  - Geneva, Switzerland
SP  - 712
EP  - 715
KW  - radiation
KW  - detector
KW  - simulation
KW  - electron
KW  - dipole
DA  - 2019/06
PY  - 2019
SN  - 978-3-95450-208-0
DO  - DOI: 10.18429/JACoW-IPAC2019-MOPRB061
UR  - http://jacow.org/ipac2019/papers/moprb061.pdf
ER  -