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Beam optics and lattice design for particle accelerators

The goal of this manuscript is to give an introduction into the design of the magnet lattice and as a consequence into the transverse dynamics of the particles in a synchrotron or storage ring. Starting from the basic principles of how to design the geometry of the ring we will briefly review the tr...

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Autor principal: Holzer, Bernhard J.
Lenguaje:eng
Publicado: 2013
Materias:
Acceso en línea:https://dx.doi.org/10.5170/CERN-2013-001.171
http://cds.cern.ch/record/1533020
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author Holzer, Bernhard J.
author_facet Holzer, Bernhard J.
author_sort Holzer, Bernhard J.
collection CERN
description The goal of this manuscript is to give an introduction into the design of the magnet lattice and as a consequence into the transverse dynamics of the particles in a synchrotron or storage ring. Starting from the basic principles of how to design the geometry of the ring we will briefly review the transverse motion of the particles and apply this knowledge to study the layout and optimization of the principal elements, namely the lattice cells. The detailed arrangement of the accelerator magnets within the cells is explained and will be used to calculate well defined and predictable beam parameters. The more specific treatment of low beta insertions is included as well as the concept of dispersion suppressors that are an indispensable part of modern collider rings.
id cern-1533020
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2013
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spelling cern-15330202023-03-14T16:33:07Zdoi:10.5170/CERN-2013-001.171http://cds.cern.ch/record/1533020engHolzer, Bernhard J.Beam optics and lattice design for particle acceleratorsAccelerators and Storage Ringsphysics.acc-phThe goal of this manuscript is to give an introduction into the design of the magnet lattice and as a consequence into the transverse dynamics of the particles in a synchrotron or storage ring. Starting from the basic principles of how to design the geometry of the ring we will briefly review the transverse motion of the particles and apply this knowledge to study the layout and optimization of the principal elements, namely the lattice cells. The detailed arrangement of the accelerator magnets within the cells is explained and will be used to calculate well defined and predictable beam parameters. The more specific treatment of low beta insertions is included as well as the concept of dispersion suppressors that are an indispensable part of modern collider rings.The goal of this manuscript is to give an introduction into the design of the magnet lattice and as a consequence into the transverse dynamics of the particles in a synchrotron or storage ring. Starting from the basic principles of how to design the geometry of the ring we will briefly review the transverse motion of the particles and apply this knowledge to study the layout and optimization of the principal elements, namely the lattice cells. The detailed arrangement of the accelerator magnets within the cells is explained and will be used to calculate well defined and predictable beam parameters. The more specific treatment of low beta insertions is included as well as the concept of dispersion suppressors that are an indispensable part of modern collider rings.arXiv:1303.6514oai:cds.cern.ch:15330202013-03-27
spellingShingle Accelerators and Storage Rings
physics.acc-ph
Holzer, Bernhard J.
Beam optics and lattice design for particle accelerators
title Beam optics and lattice design for particle accelerators
title_full Beam optics and lattice design for particle accelerators
title_fullStr Beam optics and lattice design for particle accelerators
title_full_unstemmed Beam optics and lattice design for particle accelerators
title_short Beam optics and lattice design for particle accelerators
title_sort beam optics and lattice design for particle accelerators
topic Accelerators and Storage Rings
physics.acc-ph
url https://dx.doi.org/10.5170/CERN-2013-001.171
http://cds.cern.ch/record/1533020
work_keys_str_mv AT holzerbernhardj beamopticsandlatticedesignforparticleaccelerators