Cargando…

Beam dynamics and wake-field simulations for the CLIC main linacs

The CLIC linear collider aims at accelerating multiple bunches of electrons and positrons and colliding them at a centre of mass energy of 3 TeV. These bunches will be accelerated through X-band linacs, operating at an accelerating frequency of 12 GHz. Each beam readily excites wake-fields within th...

Descripción completa

Detalles Bibliográficos
Autores principales: Khan, V.F., Jones, Roger M.
Lenguaje:eng
Publicado: 2008
Materias:
Acceso en línea:http://cds.cern.ch/record/1134878
_version_ 1780915407619620864
author Khan, V.F.
Jones, Roger M.
author_facet Khan, V.F.
Jones, Roger M.
author_sort Khan, V.F.
collection CERN
description The CLIC linear collider aims at accelerating multiple bunches of electrons and positrons and colliding them at a centre of mass energy of 3 TeV. These bunches will be accelerated through X-band linacs, operating at an accelerating frequency of 12 GHz. Each beam readily excites wake-fields within the accelerating cavities of each linac. The transverse components of the wake-fields, if left unchecked, can dilute the beam emittance. The present CLIC design relies on heavy damping of these wake-fields in order to ameliorate the effects of the wake-fields on the beam emittance. Here we present initial results on simulations of the long-range wake-fields in these structures and on beam dynamics simulations. In particular, detailed simulations are performed, on emittance dilution due to beams initially injected with realistic offsets from the electrical centre of the cavities.
id cern-1134878
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2008
record_format invenio
spelling cern-11348782021-05-03T20:13:06Zhttp://cds.cern.ch/record/1134878engKhan, V.F.Jones, Roger M.Beam dynamics and wake-field simulations for the CLIC main linacsAccelerators and Storage RingsThe CLIC linear collider aims at accelerating multiple bunches of electrons and positrons and colliding them at a centre of mass energy of 3 TeV. These bunches will be accelerated through X-band linacs, operating at an accelerating frequency of 12 GHz. Each beam readily excites wake-fields within the accelerating cavities of each linac. The transverse components of the wake-fields, if left unchecked, can dilute the beam emittance. The present CLIC design relies on heavy damping of these wake-fields in order to ameliorate the effects of the wake-fields on the beam emittance. Here we present initial results on simulations of the long-range wake-fields in these structures and on beam dynamics simulations. In particular, detailed simulations are performed, on emittance dilution due to beams initially injected with realistic offsets from the electrical centre of the cavities.The CLIC linear collider aims at accelerating multiple bunches of electrons and positrons and colliding them at a centre of mass energy of 3 TeV. These bunches will be accelerated through X-band linacs, operating at an accelerating frequency of 12 GHz. Each beam readily excites wake-fields within the accelerating cavities of each linac. The transverse components of the wake-fields, if left unchecked, can dilute the beam emittance. The present CLIC design relies on heavy damping of these wake-fields in order to ameliorate the effects of the wake-fields on the beam emittance. Here we present initial results on simulations of the long-range wake-fields in these structures and on beam dynamics simulations. In particular, detailed simulations are performed, on emittance dilution due to beams initially injected with realistic offsets from the electrical centre of the cavities.arXiv:0810.2757oai:cds.cern.ch:11348782008-10-16
spellingShingle Accelerators and Storage Rings
Khan, V.F.
Jones, Roger M.
Beam dynamics and wake-field simulations for the CLIC main linacs
title Beam dynamics and wake-field simulations for the CLIC main linacs
title_full Beam dynamics and wake-field simulations for the CLIC main linacs
title_fullStr Beam dynamics and wake-field simulations for the CLIC main linacs
title_full_unstemmed Beam dynamics and wake-field simulations for the CLIC main linacs
title_short Beam dynamics and wake-field simulations for the CLIC main linacs
title_sort beam dynamics and wake-field simulations for the clic main linacs
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1134878
work_keys_str_mv AT khanvf beamdynamicsandwakefieldsimulationsfortheclicmainlinacs
AT jonesrogerm beamdynamicsandwakefieldsimulationsfortheclicmainlinacs