Cargando…

Beam-Induced Multipactoring and Electron-Cloud Effects in Particle Accelerators

In the beam pipe of high-energy proton or positron accelerators an “electron cloud” can be generated by a variety of processes, e.g. by residual-gas ionization, by photoemission from synchrotron radiation, and, most importantly, by secondary emission via a beam-induced multipactoring process. The el...

Descripción completa

Detalles Bibliográficos
Autores principales: Caspers, Friedhelm, Rumolo, G, Scandale, Walter, Zimmermann, F
Lenguaje:eng
Publicado: 2009
Materias:
Acceso en línea:http://cds.cern.ch/record/1159906
_version_ 1780915859092406272
author Caspers, Friedhelm
Rumolo, G
Scandale, Walter
Zimmermann, F
author_facet Caspers, Friedhelm
Rumolo, G
Scandale, Walter
Zimmermann, F
author_sort Caspers, Friedhelm
collection CERN
description In the beam pipe of high-energy proton or positron accelerators an “electron cloud” can be generated by a variety of processes, e.g. by residual-gas ionization, by photoemission from synchrotron radiation, and, most importantly, by secondary emission via a beam-induced multipactoring process. The electron cloud commonly leads to a degradation of the beam vacuum by several orders of magnitude, to fast beam instabilities, to beam-size increases, and to fast or slow beam losses. At the Large Hadron Collider (LHC), the cloud electrons could also give rise to an additional heat load inside cold superconducting magnets. In addition to the direct heat deposition from incoherently moving electrons, a potential “magnetron effect” has been conjectured, where electrons would radiate coherently when moving in a strong magnetic field under the simultaneous influence of a beam-induced electric “wake” field that may become resonant with the cyclotron frequency. Electron-cloud effects are already being observed with LHC-type beam in the lower-energy LHC injector complex. In this paper, we review the characteristics of electron clouds in particle accelerators, key surface properties, electron-cloud diagnostics and observations, microwave transmission measurements and magnetron effect, electron-cloud mitigation, simulations, and open questions.
id cern-1159906
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2009
record_format invenio
spelling cern-11599062019-09-30T06:29:59Zhttp://cds.cern.ch/record/1159906engCaspers, FriedhelmRumolo, GScandale, WalterZimmermann, FBeam-Induced Multipactoring and Electron-Cloud Effects in Particle AcceleratorsAccelerators and Storage RingsIn the beam pipe of high-energy proton or positron accelerators an “electron cloud” can be generated by a variety of processes, e.g. by residual-gas ionization, by photoemission from synchrotron radiation, and, most importantly, by secondary emission via a beam-induced multipactoring process. The electron cloud commonly leads to a degradation of the beam vacuum by several orders of magnitude, to fast beam instabilities, to beam-size increases, and to fast or slow beam losses. At the Large Hadron Collider (LHC), the cloud electrons could also give rise to an additional heat load inside cold superconducting magnets. In addition to the direct heat deposition from incoherently moving electrons, a potential “magnetron effect” has been conjectured, where electrons would radiate coherently when moving in a strong magnetic field under the simultaneous influence of a beam-induced electric “wake” field that may become resonant with the cyclotron frequency. Electron-cloud effects are already being observed with LHC-type beam in the lower-energy LHC injector complex. In this paper, we review the characteristics of electron clouds in particle accelerators, key surface properties, electron-cloud diagnostics and observations, microwave transmission measurements and magnetron effect, electron-cloud mitigation, simulations, and open questions.CERN-BE-2009-005oai:cds.cern.ch:11599062009-01-31
spellingShingle Accelerators and Storage Rings
Caspers, Friedhelm
Rumolo, G
Scandale, Walter
Zimmermann, F
Beam-Induced Multipactoring and Electron-Cloud Effects in Particle Accelerators
title Beam-Induced Multipactoring and Electron-Cloud Effects in Particle Accelerators
title_full Beam-Induced Multipactoring and Electron-Cloud Effects in Particle Accelerators
title_fullStr Beam-Induced Multipactoring and Electron-Cloud Effects in Particle Accelerators
title_full_unstemmed Beam-Induced Multipactoring and Electron-Cloud Effects in Particle Accelerators
title_short Beam-Induced Multipactoring and Electron-Cloud Effects in Particle Accelerators
title_sort beam-induced multipactoring and electron-cloud effects in particle accelerators
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1159906
work_keys_str_mv AT caspersfriedhelm beaminducedmultipactoringandelectroncloudeffectsinparticleaccelerators
AT rumolog beaminducedmultipactoringandelectroncloudeffectsinparticleaccelerators
AT scandalewalter beaminducedmultipactoringandelectroncloudeffectsinparticleaccelerators
AT zimmermannf beaminducedmultipactoringandelectroncloudeffectsinparticleaccelerators