Compact beam position monitor using a segmented toroidal coil

Fuente: arXiv
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Main Authors: Abusaif, Falastine, Hinder, Fabian, Nass, Alexander, Pretz, Joerg, Rathmann, Frank, Soltner, Helmut, Shergelashvili, Dito, Suvarna, Rahul
Format: Preprint
Published: 2024
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author Abusaif, Falastine
Hinder, Fabian
Nass, Alexander
Pretz, Joerg
Rathmann, Frank
Soltner, Helmut
Shergelashvili, Dito
Suvarna, Rahul
author_facet Abusaif, Falastine
Hinder, Fabian
Nass, Alexander
Pretz, Joerg
Rathmann, Frank
Soltner, Helmut
Shergelashvili, Dito
Suvarna, Rahul
contents A new, compact beam position monitor based on segmented a toroidal coil surrounding the charged particle beam has been investigated. It makes use of the induced voltages in the windings instead of the induced charge imbalance on capacitor plates in the conventional beam position monitors. We theoretically investigate the response of the coils to the bunched particle beam based on a lumped element model and compare it with measurements in the laboratory and in the storage ring COSY, in terms of beam displacement. As to the frequency response of the coils, we find a resonant behavior, which may be exploited to increase the sensitivity of the device further. The resolution presently achieved is about 5 micrometer in a one second time interval for a beam current of 0.5 mA.
format Preprint
id arxiv_https___arxiv_org_abs_2409_14056
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Compact beam position monitor using a segmented toroidal coil
Abusaif, Falastine
Hinder, Fabian
Nass, Alexander
Pretz, Joerg
Rathmann, Frank
Soltner, Helmut
Shergelashvili, Dito
Suvarna, Rahul
Accelerator Physics
A new, compact beam position monitor based on segmented a toroidal coil surrounding the charged particle beam has been investigated. It makes use of the induced voltages in the windings instead of the induced charge imbalance on capacitor plates in the conventional beam position monitors. We theoretically investigate the response of the coils to the bunched particle beam based on a lumped element model and compare it with measurements in the laboratory and in the storage ring COSY, in terms of beam displacement. As to the frequency response of the coils, we find a resonant behavior, which may be exploited to increase the sensitivity of the device further. The resolution presently achieved is about 5 micrometer in a one second time interval for a beam current of 0.5 mA.
title Compact beam position monitor using a segmented toroidal coil
topic Accelerator Physics
url https://arxiv.org/abs/2409.14056