Cargando…

Beam-based measurements of long-range transverse wakefields in the Compact Linear Collider main-linac accelerating structure

The baseline design of CLIC (Compact Linear Collider) uses X-band accelerating structures for its main linacs. In order to maintain beam stability in multibunch operation, long-range transverse wakefields must be suppressed by 2 orders of magnitude between successive bunches, which are separated in...

Descripción completa

Detalles Bibliográficos
Autores principales: Zha, Hao, Latina, Andrea, Grudiev, Alexej, De Michele, Giovanni, Solodko, Anastasiya, Wuensch, Walter, Schulte, Daniel, Adli, Erik, Lipkowitz, Nate, Yocky, Gerald S
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevAccelBeams.19.011001
http://cds.cern.ch/record/2262877
_version_ 1780954225438621696
author Zha, Hao
Latina, Andrea
Grudiev, Alexej
De Michele, Giovanni
Solodko, Anastasiya
Wuensch, Walter
Schulte, Daniel
Adli, Erik
Lipkowitz, Nate
Yocky, Gerald S
author_facet Zha, Hao
Latina, Andrea
Grudiev, Alexej
De Michele, Giovanni
Solodko, Anastasiya
Wuensch, Walter
Schulte, Daniel
Adli, Erik
Lipkowitz, Nate
Yocky, Gerald S
author_sort Zha, Hao
collection CERN
description The baseline design of CLIC (Compact Linear Collider) uses X-band accelerating structures for its main linacs. In order to maintain beam stability in multibunch operation, long-range transverse wakefields must be suppressed by 2 orders of magnitude between successive bunches, which are separated in time by 0.5 ns. Such strong wakefield suppression is achieved by equipping every accelerating structure cell with four damping waveguides terminated with individual rf loads. A beam-based experiment to directly measure the effectiveness of this long-range transverse wakefield and benchmark simulations was made in the FACET test facility at SLAC using a prototype CLIC accelerating structure. The experiment showed good agreement with the simulations and a strong suppression of the wakefields with an unprecedented minimum resolution of 0.1  V/(pC mm m).
id oai-inspirehep.net-1455683
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
record_format invenio
spelling oai-inspirehep.net-14556832021-05-03T07:48:08Zdoi:10.1103/PhysRevAccelBeams.19.011001http://cds.cern.ch/record/2262877engZha, HaoLatina, AndreaGrudiev, AlexejDe Michele, GiovanniSolodko, AnastasiyaWuensch, WalterSchulte, DanielAdli, ErikLipkowitz, NateYocky, Gerald SBeam-based measurements of long-range transverse wakefields in the Compact Linear Collider main-linac accelerating structureAccelerators and Storage RingsThe baseline design of CLIC (Compact Linear Collider) uses X-band accelerating structures for its main linacs. In order to maintain beam stability in multibunch operation, long-range transverse wakefields must be suppressed by 2 orders of magnitude between successive bunches, which are separated in time by 0.5 ns. Such strong wakefield suppression is achieved by equipping every accelerating structure cell with four damping waveguides terminated with individual rf loads. A beam-based experiment to directly measure the effectiveness of this long-range transverse wakefield and benchmark simulations was made in the FACET test facility at SLAC using a prototype CLIC accelerating structure. The experiment showed good agreement with the simulations and a strong suppression of the wakefields with an unprecedented minimum resolution of 0.1  V/(pC mm m).oai:inspirehep.net:14556832016
spellingShingle Accelerators and Storage Rings
Zha, Hao
Latina, Andrea
Grudiev, Alexej
De Michele, Giovanni
Solodko, Anastasiya
Wuensch, Walter
Schulte, Daniel
Adli, Erik
Lipkowitz, Nate
Yocky, Gerald S
Beam-based measurements of long-range transverse wakefields in the Compact Linear Collider main-linac accelerating structure
title Beam-based measurements of long-range transverse wakefields in the Compact Linear Collider main-linac accelerating structure
title_full Beam-based measurements of long-range transverse wakefields in the Compact Linear Collider main-linac accelerating structure
title_fullStr Beam-based measurements of long-range transverse wakefields in the Compact Linear Collider main-linac accelerating structure
title_full_unstemmed Beam-based measurements of long-range transverse wakefields in the Compact Linear Collider main-linac accelerating structure
title_short Beam-based measurements of long-range transverse wakefields in the Compact Linear Collider main-linac accelerating structure
title_sort beam-based measurements of long-range transverse wakefields in the compact linear collider main-linac accelerating structure
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1103/PhysRevAccelBeams.19.011001
http://cds.cern.ch/record/2262877
work_keys_str_mv AT zhahao beambasedmeasurementsoflongrangetransversewakefieldsinthecompactlinearcollidermainlinacacceleratingstructure
AT latinaandrea beambasedmeasurementsoflongrangetransversewakefieldsinthecompactlinearcollidermainlinacacceleratingstructure
AT grudievalexej beambasedmeasurementsoflongrangetransversewakefieldsinthecompactlinearcollidermainlinacacceleratingstructure
AT demichelegiovanni beambasedmeasurementsoflongrangetransversewakefieldsinthecompactlinearcollidermainlinacacceleratingstructure
AT solodkoanastasiya beambasedmeasurementsoflongrangetransversewakefieldsinthecompactlinearcollidermainlinacacceleratingstructure
AT wuenschwalter beambasedmeasurementsoflongrangetransversewakefieldsinthecompactlinearcollidermainlinacacceleratingstructure
AT schultedaniel beambasedmeasurementsoflongrangetransversewakefieldsinthecompactlinearcollidermainlinacacceleratingstructure
AT adlierik beambasedmeasurementsoflongrangetransversewakefieldsinthecompactlinearcollidermainlinacacceleratingstructure
AT lipkowitznate beambasedmeasurementsoflongrangetransversewakefieldsinthecompactlinearcollidermainlinacacceleratingstructure
AT yockygeralds beambasedmeasurementsoflongrangetransversewakefieldsinthecompactlinearcollidermainlinacacceleratingstructure