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RIS citation export for MOPOPT018: Advancing to a GHz Transition Radiation Monitor for Longitudinal Charge Distribution Measurements

TY  - CONF
AU  - Klaproth, S.
AU  - De Gersem, H.
AU  - Penirschke, A.
AU  - Reichert, T.
AU  - Singh, R.
ED  - Zimmermann, Frank
ED  - Tanaka, Hitoshi
ED  - Sudmuang, Porntip
ED  - Klysubun, Prapong
ED  - Sunwong, Prapaiwan
ED  - Chanwattana, Thakonwat
ED  - Petit-Jean-Genaz, Christine
ED  - Schaa, Volker R.W.
TI  - Advancing to a GHz Transition Radiation Monitor for Longitudinal Charge Distribution Measurements
J2  - Proc. of IPAC2022, Bangkok, Thailand, 12-17 June 2022
CY  - Bangkok, Thailand
T2  - International Particle Accelerator Conference
T3  - 13
LA  - english
AB  - In the past, longitudinal beam profiles have been measured with e.g., Feschenko monitors*, Fast Faraday Cups (FFC)** and field monitors. Feschenko monitors usually examine an average shape over several pulses and FFCs are interceptive devices by design. In this work we want to present the progress in the development of a novel GHz diffraction radiation monitor which shall be able to measure the longitudinal charge distribution of single bunches within Hadron beam LINACS non-destructively. A proof-of-concept measurement has been performed at GSI. We aim for a resolution of 50 to 100ps at beam energies of β=0.05 to 0.74. electronic field simulations were performed using CST Particle Studio to determine an optimal RF-Window, which also suits as vacuum chamber and the beam energy and angular dependencies of the diffraction radiation for different materials were analyzed.
PB  - JACoW Publishing
CP  - Geneva, Switzerland
SP  - 267
EP  - 270
KW  - vacuum
KW  - radiation
KW  - target
KW  - simulation
KW  - electron
DA  - 2022/07
PY  - 2022
SN  - 2673-5490
SN  - 978-3-95450-227-1
DO  - doi:10.18429/JACoW-IPAC2022-MOPOPT018
UR  - https://jacow.org/ipac2022/papers/mopopt018.pdf
ER  -