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RIS citation export for THPP05: Properties of Cherenkov Diffraction Radiation as Predicted by the Polarisation Currents Approach for Beam Instrumentation

TY  - CONF
AU  - Harryman, D.M.
AU  - Bergamaschi, M.
AU  - Bobb, L.
AU  - Fedorov, K.V.
AU  - Karataev, P.
AU  - Kieffer, R.
AU  - Lefèvre, T.
AU  - Mazzoni, S.
AU  - Potylitsyn, A.
AU  - Schloegelhofer, A.
AU  - Łasocha, K.
ED  - Tavares, Daniel
ED  - Picoreti, Renan
ED  - Bruno, Gustavo
ED  - Marques, Sergio
ED  - Schaa, Volker R.W.
TI  - Properties of Cherenkov Diffraction Radiation as Predicted by the Polarisation Currents Approach for Beam Instrumentation
J2  - Proc. of IBIC2020, Santos, Brazil, 14-18 September 2020
CY  - Santos, Brazil
T2  - International Beam Instrumentation Conference
T3  - 9
LA  - english
AB  - Cherenkov-Diffraction Radiation (ChDR) appears when a charged particle moves in the vicinity of a dielectric medium with velocity higher than the phase velocity of light inside the medium. As the charged particle does not contact the medium, the emission of ChDR is a phenomenon that can be exploited for a range of non-invasive beam diagnostics. Experimental tests are underway on the Booster To Storage-ring (BTS) test stand at Diamond Light Source to explore the use of dielectric radiators as Beam Position Monitor (BPM) pickups by measuring the incoherent ChDR emission. In order to compliment the experiments on the BTS test stand, ChDR simulations have been performed using the Polarisation Currents Approach (PCA) model. This paper explores the PCA simulations for the BTS test stand, and the application for future diagnostics.
PB  - JACoW Publishing
CP  - Geneva, Switzerland
SP  - 218
EP  - 222
KW  - radiation
KW  - simulation
KW  - extraction
KW  - experiment
KW  - electron
DA  - 2020/10
PY  - 2020
SN  - 2673-5350
SN  - 978-3-95450-222-6
DO  - doi:10.18429/JACoW-IBIC2020-THPP05
UR  - https://www.jacow.org/ibic2020/papers/thpp05.pdf
ER  -