Emittance growth and halo formation in the relaxation of mismatched beams
In this paper, a simplified theoretical model that allows prediction of the final stationary state attained by an initially mismatched beam is presented. The proposed stationary state has a core-halo distribution. Based on the incompressibility of the Vlasov phase-space dynamics, the core behaves as...
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American Physical Society
2010-11-01
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Series: | Physical Review Special Topics. Accelerators and Beams |
Online Access: | http://doi.org/10.1103/PhysRevSTAB.13.114202 |
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doaj-abd320f8a0b2429a95744d4f75b54ba12020-11-25T00:53:40ZengAmerican Physical SocietyPhysical Review Special Topics. Accelerators and Beams1098-44022010-11-01131111420210.1103/PhysRevSTAB.13.114202Emittance growth and halo formation in the relaxation of mismatched beamsTarcisio N. TelesRenato PakterYan LevinIn this paper, a simplified theoretical model that allows prediction of the final stationary state attained by an initially mismatched beam is presented. The proposed stationary state has a core-halo distribution. Based on the incompressibility of the Vlasov phase-space dynamics, the core behaves as a completely degenerate Fermi gas, where the particles occupy the lowest possible energy states accessible to them. On the other hand, the halo is given by a tenuous uniform distribution that extends up to a maximum energy determined by the core-particle resonance. This leads to a self-consistent model in which the beam density and self-fields can be determined analytically. The theory allows one to estimate the emittance growth and the fraction of particles that evaporate to the halo in the relaxation process. Self-consistent N-particle simulation results are also presented and are used to verify the theory.http://doi.org/10.1103/PhysRevSTAB.13.114202 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Tarcisio N. Teles Renato Pakter Yan Levin |
spellingShingle |
Tarcisio N. Teles Renato Pakter Yan Levin Emittance growth and halo formation in the relaxation of mismatched beams Physical Review Special Topics. Accelerators and Beams |
author_facet |
Tarcisio N. Teles Renato Pakter Yan Levin |
author_sort |
Tarcisio N. Teles |
title |
Emittance growth and halo formation in the relaxation of mismatched beams |
title_short |
Emittance growth and halo formation in the relaxation of mismatched beams |
title_full |
Emittance growth and halo formation in the relaxation of mismatched beams |
title_fullStr |
Emittance growth and halo formation in the relaxation of mismatched beams |
title_full_unstemmed |
Emittance growth and halo formation in the relaxation of mismatched beams |
title_sort |
emittance growth and halo formation in the relaxation of mismatched beams |
publisher |
American Physical Society |
series |
Physical Review Special Topics. Accelerators and Beams |
issn |
1098-4402 |
publishDate |
2010-11-01 |
description |
In this paper, a simplified theoretical model that allows prediction of the final stationary state attained by an initially mismatched beam is presented. The proposed stationary state has a core-halo distribution. Based on the incompressibility of the Vlasov phase-space dynamics, the core behaves as a completely degenerate Fermi gas, where the particles occupy the lowest possible energy states accessible to them. On the other hand, the halo is given by a tenuous uniform distribution that extends up to a maximum energy determined by the core-particle resonance. This leads to a self-consistent model in which the beam density and self-fields can be determined analytically. The theory allows one to estimate the emittance growth and the fraction of particles that evaporate to the halo in the relaxation process. Self-consistent N-particle simulation results are also presented and are used to verify the theory. |
url |
http://doi.org/10.1103/PhysRevSTAB.13.114202 |
work_keys_str_mv |
AT tarcisionteles emittancegrowthandhaloformationintherelaxationofmismatchedbeams AT renatopakter emittancegrowthandhaloformationintherelaxationofmismatchedbeams AT yanlevin emittancegrowthandhaloformationintherelaxationofmismatchedbeams |
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