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Beam Dynamics Simulations of the REX-ISOLDE A/q-separator

The REX-ISOLDE A=q-separator selects the radioactive species of interest from the background of residual gas ions coming from the EBIS ion source. In the context of the HIE-ISOLDE upgrade, including the implementation of a multi-harmonic buncher and an upgraded EBIS, the separator and the beam line...

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Detalles Bibliográficos
Autores principales: Fraser, M A, Voulot, D, Wenander, F
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:http://cds.cern.ch/record/1668145
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author Fraser, M A
Voulot, D
Wenander, F
author_facet Fraser, M A
Voulot, D
Wenander, F
author_sort Fraser, M A
collection CERN
description The REX-ISOLDE A=q-separator selects the radioactive species of interest from the background of residual gas ions coming from the EBIS ion source. In the context of the HIE-ISOLDE upgrade, including the implementation of a multi-harmonic buncher and an upgraded EBIS, the separator and the beam line between the EBIS and RFQ, which we will call the Low Energy Beam Transfer (LEBT) line, has been simulated by tracking particles through the field maps of each active element using the TRACK [4] code. The simulations were benchmarked with a COSY-1 model that was improved to take into account the fringe fields of the electrostatic quadrupoles, electrostatic deflector and magnetic bender; the model can be used to tune and optimise the separator with higher-order effects taken into account. In this note the beam dynamics simulations are documented and the transverse and longitudinal acceptance of the separator line studied to provide design constraints for the EBIS upgrade.
id cern-1668145
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
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spelling cern-16681452023-08-04T20:26:47Zhttp://cds.cern.ch/record/1668145engFraser, M AVoulot, DWenander, FBeam Dynamics Simulations of the REX-ISOLDE A/q-separatorAccelerators and Storage RingsThe REX-ISOLDE A=q-separator selects the radioactive species of interest from the background of residual gas ions coming from the EBIS ion source. In the context of the HIE-ISOLDE upgrade, including the implementation of a multi-harmonic buncher and an upgraded EBIS, the separator and the beam line between the EBIS and RFQ, which we will call the Low Energy Beam Transfer (LEBT) line, has been simulated by tracking particles through the field maps of each active element using the TRACK [4] code. The simulations were benchmarked with a COSY-1 model that was improved to take into account the fringe fields of the electrostatic quadrupoles, electrostatic deflector and magnetic bender; the model can be used to tune and optimise the separator with higher-order effects taken into account. In this note the beam dynamics simulations are documented and the transverse and longitudinal acceptance of the separator line studied to provide design constraints for the EBIS upgrade.CERN-ACC-Note-2014-0017oai:cds.cern.ch:16681452014-03-12
spellingShingle Accelerators and Storage Rings
Fraser, M A
Voulot, D
Wenander, F
Beam Dynamics Simulations of the REX-ISOLDE A/q-separator
title Beam Dynamics Simulations of the REX-ISOLDE A/q-separator
title_full Beam Dynamics Simulations of the REX-ISOLDE A/q-separator
title_fullStr Beam Dynamics Simulations of the REX-ISOLDE A/q-separator
title_full_unstemmed Beam Dynamics Simulations of the REX-ISOLDE A/q-separator
title_short Beam Dynamics Simulations of the REX-ISOLDE A/q-separator
title_sort beam dynamics simulations of the rex-isolde a/q-separator
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1668145
work_keys_str_mv AT fraserma beamdynamicssimulationsoftherexisoldeaqseparator
AT voulotd beamdynamicssimulationsoftherexisoldeaqseparator
AT wenanderf beamdynamicssimulationsoftherexisoldeaqseparator