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Proposal for Single-Bunch Collimator Wakefield Measurements at SLAC ESTB

Collimator wakefields in the Beam Delivery System (BDS) of future linear colliders, such as the International Linear Collider (ILC) and the Compact Linear Collider (CLIC), can be an important source of emittance growth and beam jitter amplification, consequently degrading the luminosity. Therefore,...

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Autores principales: Resta-Lopez, J., Clarke, C.I., Faus-Golfe, A., Fuster-Martinez, N., Hast, C., Jones, R.M., Latina, A., Pivi, M., Rumolo, G., Schulte, D., Smith, J., Tomas, R.
Lenguaje:eng
Publicado: 2012
Materias:
Acceso en línea:http://cds.cern.ch/record/1502639
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author Resta-Lopez, J.
Clarke, C.I.
Faus-Golfe, A.
Fuster-Martinez, N.
Hast, C.
Jones, R.M.
Latina, A.
Pivi, M.
Rumolo, G.
Schulte, D.
Smith, J.
Tomas, R.
author_facet Resta-Lopez, J.
Clarke, C.I.
Faus-Golfe, A.
Fuster-Martinez, N.
Hast, C.
Jones, R.M.
Latina, A.
Pivi, M.
Rumolo, G.
Schulte, D.
Smith, J.
Tomas, R.
author_sort Resta-Lopez, J.
collection CERN
description Collimator wakefields in the Beam Delivery System (BDS) of future linear colliders, such as the International Linear Collider (ILC) and the Compact Linear Collider (CLIC), can be an important source of emittance growth and beam jitter amplification, consequently degrading the luminosity. Therefore, a better understanding of collimator wakefield effects is essential to optimise the collimation systems of future linear colliders in order to minimise wakefield effects. In the past, measurements of single-bunch collimator wakefields have been carried out at SLAC with the aim of benchmarking theory, numerical calculations and experiments. Those studies revealed some discrepancies between the measurements and the theoretical models. New experimental tests using available beam test facilities, such as the End Station A Test Beam (ESTB) at SLAC, would help to improve our understanding on collimator wakefields. ESTB will provide the perfect test bed to investigate collimator wakefields for different bunch length conditions, relevant for both ILC (300 micrometers nominal bunch length) and CLIC (44 micrometers nominal bunch length) studies. Here we propose to perform new experimental tests of collimator wakefield effects on electron/positron beams at SLAC ESTB.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2012
record_format invenio
spelling cern-15026392023-03-14T19:41:39Zhttp://cds.cern.ch/record/1502639engResta-Lopez, J.Clarke, C.I.Faus-Golfe, A.Fuster-Martinez, N.Hast, C.Jones, R.M.Latina, A.Pivi, M.Rumolo, G.Schulte, D.Smith, J.Tomas, R.Proposal for Single-Bunch Collimator Wakefield Measurements at SLAC ESTBAccelerators and Storage RingsCollimator wakefields in the Beam Delivery System (BDS) of future linear colliders, such as the International Linear Collider (ILC) and the Compact Linear Collider (CLIC), can be an important source of emittance growth and beam jitter amplification, consequently degrading the luminosity. Therefore, a better understanding of collimator wakefield effects is essential to optimise the collimation systems of future linear colliders in order to minimise wakefield effects. In the past, measurements of single-bunch collimator wakefields have been carried out at SLAC with the aim of benchmarking theory, numerical calculations and experiments. Those studies revealed some discrepancies between the measurements and the theoretical models. New experimental tests using available beam test facilities, such as the End Station A Test Beam (ESTB) at SLAC, would help to improve our understanding on collimator wakefields. ESTB will provide the perfect test bed to investigate collimator wakefields for different bunch length conditions, relevant for both ILC (300 micrometers nominal bunch length) and CLIC (44 micrometers nominal bunch length) studies. Here we propose to perform new experimental tests of collimator wakefield effects on electron/positron beams at SLAC ESTB.Collimator wakefields in the Beam Delivery System (BDS) of future linear colliders, such as the International Linear Collider (ILC) and the Compact Linear Collider (CLIC), can be an important source of emittance growth and beam jitter amplification, consequently degrading the luminosity. Therefore, a better understanding of collimator wakefield effects is essential to optimise the collimation systems of future linear colliders in order to minimise wakefield effects. In the past, measurements of single-bunch collimator wakefields have been carried out at SLAC with the aim of benchmarking theory, numerical calculations and experiments. Those studies revealed some discrepancies between the measurements and the theoretical models. New experimental tests using available beam test facilities, such as the End Station A Test Beam (ESTB) at SLAC, would help to improve our understanding on collimator wakefields. ESTB will provide the perfect test bed to investigate collimator wakefields for different bunch length conditions, relevant for both ILC (300 micrometers nominal bunch length) and CLIC (44 micrometers nominal bunch length) studies. Here we propose to perform new experimental tests of collimator wakefield effects on electron/positron beams at SLAC ESTB.arXiv:1212.6023oai:cds.cern.ch:15026392012-12-27
spellingShingle Accelerators and Storage Rings
Resta-Lopez, J.
Clarke, C.I.
Faus-Golfe, A.
Fuster-Martinez, N.
Hast, C.
Jones, R.M.
Latina, A.
Pivi, M.
Rumolo, G.
Schulte, D.
Smith, J.
Tomas, R.
Proposal for Single-Bunch Collimator Wakefield Measurements at SLAC ESTB
title Proposal for Single-Bunch Collimator Wakefield Measurements at SLAC ESTB
title_full Proposal for Single-Bunch Collimator Wakefield Measurements at SLAC ESTB
title_fullStr Proposal for Single-Bunch Collimator Wakefield Measurements at SLAC ESTB
title_full_unstemmed Proposal for Single-Bunch Collimator Wakefield Measurements at SLAC ESTB
title_short Proposal for Single-Bunch Collimator Wakefield Measurements at SLAC ESTB
title_sort proposal for single-bunch collimator wakefield measurements at slac estb
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1502639
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