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Normal form of particle motion under the influence of an AC dipole

AC dipoles in accelerators are used to excite coherent betatron oscillations at a drive frequency close to the tune. These beam oscillations may last arbitrarily long and, in principle, there is no significant emittance growth if the AC dipole is adiabatically turned on and off. Therefore the AC dip...

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Autor principal: Tomás, R
Lenguaje:eng
Publicado: 2002
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevSTAB.5.054001
http://cds.cern.ch/record/546092
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author Tomás, R
author_facet Tomás, R
author_sort Tomás, R
collection CERN
description AC dipoles in accelerators are used to excite coherent betatron oscillations at a drive frequency close to the tune. These beam oscillations may last arbitrarily long and, in principle, there is no significant emittance growth if the AC dipole is adiabatically turned on and off. Therefore the AC dipole seems to be an adequate tool for non-linear diagnostics provided the particle motion is well described in presence of the AC dipole and non-linearities. Normal Forms and Lie algebra are powerful tools to study the non-linear content of an accelerator lattice. In this article a way to obtain the Normal Form of the Hamiltonian of an accelerator with an AC dipole is described. The particle motion to first order in the non-linearities is derived using Lie algebra techniques. The dependence of the Hamiltonian terms on the longitudinal coordinate is studied showing that they vary differently depending on the AC dipole parameters. The relation is given between the lines of the Fourier spectrum of the turn-by-turn motion and the Hamiltonian terms.
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spelling cern-5460922023-05-05T13:08:14Zdoi:10.1103/PhysRevSTAB.5.054001http://cds.cern.ch/record/546092engTomás, RNormal form of particle motion under the influence of an AC dipoleAccelerators and Storage RingsAC dipoles in accelerators are used to excite coherent betatron oscillations at a drive frequency close to the tune. These beam oscillations may last arbitrarily long and, in principle, there is no significant emittance growth if the AC dipole is adiabatically turned on and off. Therefore the AC dipole seems to be an adequate tool for non-linear diagnostics provided the particle motion is well described in presence of the AC dipole and non-linearities. Normal Forms and Lie algebra are powerful tools to study the non-linear content of an accelerator lattice. In this article a way to obtain the Normal Form of the Hamiltonian of an accelerator with an AC dipole is described. The particle motion to first order in the non-linearities is derived using Lie algebra techniques. The dependence of the Hamiltonian terms on the longitudinal coordinate is studied showing that they vary differently depending on the AC dipole parameters. The relation is given between the lines of the Fourier spectrum of the turn-by-turn motion and the Hamiltonian terms.CERN-SL-2002-008oai:cds.cern.ch:5460922002-04-08
spellingShingle Accelerators and Storage Rings
Tomás, R
Normal form of particle motion under the influence of an AC dipole
title Normal form of particle motion under the influence of an AC dipole
title_full Normal form of particle motion under the influence of an AC dipole
title_fullStr Normal form of particle motion under the influence of an AC dipole
title_full_unstemmed Normal form of particle motion under the influence of an AC dipole
title_short Normal form of particle motion under the influence of an AC dipole
title_sort normal form of particle motion under the influence of an ac dipole
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1103/PhysRevSTAB.5.054001
http://cds.cern.ch/record/546092
work_keys_str_mv AT tomasr normalformofparticlemotionundertheinfluenceofanacdipole