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Advanced Simulations of Optical Transition and Diffraction Radiation

Charged particle beam diagnostics is a key task in modern and future accelerator installations. The diagnostic tools are practically the “eyes” of the operators. The precision and resolution of the diagnostic equipment are crucial to define the performance of the accelerator. Transition and diffract...

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Detalles Bibliográficos
Autores principales: Aumeyr, Thomas, Billing, MG, Bobb, Lorraine Marie, Bolzon, B, Bravin, Enrico, Karataev, Pavel, Kruchinin, Konstantin, Lefevre, Thibaut, Mazzoni, Stefano
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevSTAB.18.042801
http://cds.cern.ch/record/2120823
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author Aumeyr, Thomas
Billing, MG
Bobb, Lorraine Marie
Bolzon, B
Bravin, Enrico
Karataev, Pavel
Kruchinin, Konstantin
Lefevre, Thibaut
Mazzoni, Stefano
author_facet Aumeyr, Thomas
Billing, MG
Bobb, Lorraine Marie
Bolzon, B
Bravin, Enrico
Karataev, Pavel
Kruchinin, Konstantin
Lefevre, Thibaut
Mazzoni, Stefano
author_sort Aumeyr, Thomas
collection CERN
description Charged particle beam diagnostics is a key task in modern and future accelerator installations. The diagnostic tools are practically the “eyes” of the operators. The precision and resolution of the diagnostic equipment are crucial to define the performance of the accelerator. Transition and diffraction radiation (TR and DR) are widely used for electron beam parameter monitoring. However, the precision and resolution of those devices are determined by how well the production, transport and detection of these radiation types are understood. This paper reports on simulations of TR and DR spatial-spectral characteristics using the physical optics propagation (POP) mode of the Zemax advanced optics simulation software. A good consistency with theory is demonstrated. Also, realistic optical system alignment issues are discussed.
id cern-2120823
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
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spelling cern-21208232023-07-20T15:04:45Zdoi:10.1103/PhysRevSTAB.18.042801http://cds.cern.ch/record/2120823engAumeyr, ThomasBilling, MGBobb, Lorraine MarieBolzon, BBravin, EnricoKarataev, PavelKruchinin, KonstantinLefevre, ThibautMazzoni, StefanoAdvanced Simulations of Optical Transition and Diffraction RadiationAccelerators and Storage RingsCharged particle beam diagnostics is a key task in modern and future accelerator installations. The diagnostic tools are practically the “eyes” of the operators. The precision and resolution of the diagnostic equipment are crucial to define the performance of the accelerator. Transition and diffraction radiation (TR and DR) are widely used for electron beam parameter monitoring. However, the precision and resolution of those devices are determined by how well the production, transport and detection of these radiation types are understood. This paper reports on simulations of TR and DR spatial-spectral characteristics using the physical optics propagation (POP) mode of the Zemax advanced optics simulation software. A good consistency with theory is demonstrated. Also, realistic optical system alignment issues are discussed.CERN-BE-2016-001CLIC-Note-1062oai:cds.cern.ch:21208232015-10-14
spellingShingle Accelerators and Storage Rings
Aumeyr, Thomas
Billing, MG
Bobb, Lorraine Marie
Bolzon, B
Bravin, Enrico
Karataev, Pavel
Kruchinin, Konstantin
Lefevre, Thibaut
Mazzoni, Stefano
Advanced Simulations of Optical Transition and Diffraction Radiation
title Advanced Simulations of Optical Transition and Diffraction Radiation
title_full Advanced Simulations of Optical Transition and Diffraction Radiation
title_fullStr Advanced Simulations of Optical Transition and Diffraction Radiation
title_full_unstemmed Advanced Simulations of Optical Transition and Diffraction Radiation
title_short Advanced Simulations of Optical Transition and Diffraction Radiation
title_sort advanced simulations of optical transition and diffraction radiation
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1103/PhysRevSTAB.18.042801
http://cds.cern.ch/record/2120823
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