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Making microbeams and nanobeams by channeling in microstructures and nanostructures

A particle beam of very small cross-section is useful in many accelerator applications including biological and medical ones. We show the capability of the channeling technique using a micron-sized structure on a surface of a single crystal, or using a nanotube, to produce beam of a cross-section do...

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Detalles Bibliográficos
Autores principales: Bellucci, S., Biryukov, V.M., Chesnokov, Yu.A., Guidi, V., Scandale, W.
Lenguaje:eng
Publicado: 2002
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevSTAB.6.033502
http://cds.cern.ch/record/581277
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author Bellucci, S.
Biryukov, V.M.
Chesnokov, Yu.A.
Guidi, V.
Scandale, W.
author_facet Bellucci, S.
Biryukov, V.M.
Chesnokov, Yu.A.
Guidi, V.
Scandale, W.
author_sort Bellucci, S.
collection CERN
description A particle beam of very small cross-section is useful in many accelerator applications including biological and medical ones. We show the capability of the channeling technique using a micron-sized structure on a surface of a single crystal, or using a nanotube, to produce beam of a cross-section down to 1 square micrometer (or nanometer). The channeled beam can be deflected and thus well separated in angle and space from the primary and scattered particles. Monte Carlo simulation is done to evaluate the characteristics of a channeled microbeam. Emittances down to 0.1-0.001 nanometer radian, and flux up to 1 million particles per square micron per second, can be achieved for protons and ions.
id cern-581277
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2002
record_format invenio
spelling cern-5812772023-03-14T20:18:51Zdoi:10.1103/PhysRevSTAB.6.033502http://cds.cern.ch/record/581277engBellucci, S.Biryukov, V.M.Chesnokov, Yu.A.Guidi, V.Scandale, W.Making microbeams and nanobeams by channeling in microstructures and nanostructuresOther Fields of PhysicsA particle beam of very small cross-section is useful in many accelerator applications including biological and medical ones. We show the capability of the channeling technique using a micron-sized structure on a surface of a single crystal, or using a nanotube, to produce beam of a cross-section down to 1 square micrometer (or nanometer). The channeled beam can be deflected and thus well separated in angle and space from the primary and scattered particles. Monte Carlo simulation is done to evaluate the characteristics of a channeled microbeam. Emittances down to 0.1-0.001 nanometer radian, and flux up to 1 million particles per square micron per second, can be achieved for protons and ions.A particle beam of very small cross-section is useful in many accelerator applications including biological and medical ones. We show the capability of the channeling technique using a micron-sized structure on a surface of a single crystal, or using a nanotube, to produce beam of a cross-section down to 1 square micrometer (or nanometer). The channeled beam can be deflected and thus well separated in angle and space from the primary and scattered particles. Monte Carlo simulation is done to evaluate the characteristics of a channeled microbeam. Emittances down to 0.1-0.001 nanometer radian, and flux up to 1 million particles per square micron per second, can be achieved for protons and ions.physics/0209057oai:cds.cern.ch:5812772002-09-16
spellingShingle Other Fields of Physics
Bellucci, S.
Biryukov, V.M.
Chesnokov, Yu.A.
Guidi, V.
Scandale, W.
Making microbeams and nanobeams by channeling in microstructures and nanostructures
title Making microbeams and nanobeams by channeling in microstructures and nanostructures
title_full Making microbeams and nanobeams by channeling in microstructures and nanostructures
title_fullStr Making microbeams and nanobeams by channeling in microstructures and nanostructures
title_full_unstemmed Making microbeams and nanobeams by channeling in microstructures and nanostructures
title_short Making microbeams and nanobeams by channeling in microstructures and nanostructures
title_sort making microbeams and nanobeams by channeling in microstructures and nanostructures
topic Other Fields of Physics
url https://dx.doi.org/10.1103/PhysRevSTAB.6.033502
http://cds.cern.ch/record/581277
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