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Extremely low emittance beam size diagnostics with sub-micrometer resolution using optical transition radiation

Transition radiation (TR) appearing when relativistic uniformly moving charged particle (or bunch of particles) crosses a boundary between two media with different di- electric properties is widely used as a tool for diagnostics of particle beams in modern accelerator facilities. The best resolution...

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Detalles Bibliográficos
Autores principales: Kruchinin, K, Boogert, S T, Karataev, P, Nevay, L J, Bolzon, B, Lefevre, T, Mazzoni, S, Aryshev, A, Shevelev, M, Terunuma, N, Urakawa, J
Lenguaje:eng
Publicado: 2013
Materias:
Acceso en línea:http://cds.cern.ch/record/1712936
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author Kruchinin, K
Boogert, S T
Karataev, P
Nevay, L J
Bolzon, B
Lefevre, T
Mazzoni, S
Aryshev, A
Shevelev, M
Terunuma, N
Urakawa, J
author_facet Kruchinin, K
Boogert, S T
Karataev, P
Nevay, L J
Bolzon, B
Lefevre, T
Mazzoni, S
Aryshev, A
Shevelev, M
Terunuma, N
Urakawa, J
author_sort Kruchinin, K
collection CERN
description Transition radiation (TR) appearing when relativistic uniformly moving charged particle (or bunch of particles) crosses a boundary between two media with different di- electric properties is widely used as a tool for diagnostics of particle beams in modern accelerator facilities. The best resolution which can be achieved using beam profile mon- itors based on TR in optical wave range has a limitation caused by a spatial resolution of an optical system. Using a method based on analyzing a visibility of the TR Point Spread Function one can achieve a sub-micrometer reso- lution. In this report we shall represent the recent exper- imental results of a micron-scale beam size measurement at KEK-ATF2. We shall discuss the hardware status and future plans.
id cern-1712936
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2013
record_format invenio
spelling cern-17129362022-08-17T13:30:58Zhttp://cds.cern.ch/record/1712936engKruchinin, KBoogert, S TKarataev, PNevay, L JBolzon, BLefevre, TMazzoni, SAryshev, AShevelev, MTerunuma, NUrakawa, JExtremely low emittance beam size diagnostics with sub-micrometer resolution using optical transition radiationAccelerators and Storage RingsTransition radiation (TR) appearing when relativistic uniformly moving charged particle (or bunch of particles) crosses a boundary between two media with different di- electric properties is widely used as a tool for diagnostics of particle beams in modern accelerator facilities. The best resolution which can be achieved using beam profile mon- itors based on TR in optical wave range has a limitation caused by a spatial resolution of an optical system. Using a method based on analyzing a visibility of the TR Point Spread Function one can achieve a sub-micrometer reso- lution. In this report we shall represent the recent exper- imental results of a micron-scale beam size measurement at KEK-ATF2. We shall discuss the hardware status and future plans.oai:cds.cern.ch:17129362013
spellingShingle Accelerators and Storage Rings
Kruchinin, K
Boogert, S T
Karataev, P
Nevay, L J
Bolzon, B
Lefevre, T
Mazzoni, S
Aryshev, A
Shevelev, M
Terunuma, N
Urakawa, J
Extremely low emittance beam size diagnostics with sub-micrometer resolution using optical transition radiation
title Extremely low emittance beam size diagnostics with sub-micrometer resolution using optical transition radiation
title_full Extremely low emittance beam size diagnostics with sub-micrometer resolution using optical transition radiation
title_fullStr Extremely low emittance beam size diagnostics with sub-micrometer resolution using optical transition radiation
title_full_unstemmed Extremely low emittance beam size diagnostics with sub-micrometer resolution using optical transition radiation
title_short Extremely low emittance beam size diagnostics with sub-micrometer resolution using optical transition radiation
title_sort extremely low emittance beam size diagnostics with sub-micrometer resolution using optical transition radiation
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1712936
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