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Demonstration of CLIC Level Phase Stability using a High Bandwidth, Low Latency Drive Beam Phase Feedforward System at the CLIC Test Facility CTF3

The CLIC acceleration scheme, in which the RF power used to accelerate the main high energy beam is extracted from a second high intensity but low energy beam, places strict requirements on the phase stability of the power producing drive beam. To limit luminosity loss caused by energy jitter leadin...

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Autores principales: Roberts, Jack, Andersson, Alexandra, Burrows, Philip, Christian, Glenn, Corsini, Roberto, Ghigo, Andrea, Marcellini, Fabio, Perry, Colin, Skowroński, Piotr
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.18429/JACoW-IPAC2016-WEPOR006
http://cds.cern.ch/record/2207420
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author Roberts, Jack
Andersson, Alexandra
Burrows, Philip
Christian, Glenn
Corsini, Roberto
Ghigo, Andrea
Marcellini, Fabio
Perry, Colin
Skowroński, Piotr
author_facet Roberts, Jack
Andersson, Alexandra
Burrows, Philip
Christian, Glenn
Corsini, Roberto
Ghigo, Andrea
Marcellini, Fabio
Perry, Colin
Skowroński, Piotr
author_sort Roberts, Jack
collection CERN
description The CLIC acceleration scheme, in which the RF power used to accelerate the main high energy beam is extracted from a second high intensity but low energy beam, places strict requirements on the phase stability of the power producing drive beam. To limit luminosity loss caused by energy jitter leading to emittance growth in the final focus to below 1%, 0.2 degrees of 12 GHz, or 50 fs, drive beam phase stability is needed. A low-latency phase feedforward correction with bandwidth above 17.5 MHz will be used to reduce the drive beam phase jitter to this level. The proposed scheme corrects the phase using fast electromagnetic kickers to vary the path length in a chicane prior to the drive beam power extraction. A prototype of this system has been installed at the CLIC test facility CTF3 to prove its feasibility. The latest results from the system are presented, demonstrating phase stabilisation in agreement with simulations given the beam conditions and power of the kicker amplifiers. Necessary improvements in the phase monitor performance and optics corrections made to remove the phase-energy dependence via R56 in order to achieve this level of stability are also discussed.
id oai-inspirehep.net-1470293
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
record_format invenio
spelling oai-inspirehep.net-14702932023-07-20T15:06:39Zdoi:10.18429/JACoW-IPAC2016-WEPOR006http://cds.cern.ch/record/2207420engRoberts, JackAndersson, AlexandraBurrows, PhilipChristian, GlennCorsini, RobertoGhigo, AndreaMarcellini, FabioPerry, ColinSkowroński, PiotrDemonstration of CLIC Level Phase Stability using a High Bandwidth, Low Latency Drive Beam Phase Feedforward System at the CLIC Test Facility CTF3Accelerators and Storage RingsThe CLIC acceleration scheme, in which the RF power used to accelerate the main high energy beam is extracted from a second high intensity but low energy beam, places strict requirements on the phase stability of the power producing drive beam. To limit luminosity loss caused by energy jitter leading to emittance growth in the final focus to below 1%, 0.2 degrees of 12 GHz, or 50 fs, drive beam phase stability is needed. A low-latency phase feedforward correction with bandwidth above 17.5 MHz will be used to reduce the drive beam phase jitter to this level. The proposed scheme corrects the phase using fast electromagnetic kickers to vary the path length in a chicane prior to the drive beam power extraction. A prototype of this system has been installed at the CLIC test facility CTF3 to prove its feasibility. The latest results from the system are presented, demonstrating phase stabilisation in agreement with simulations given the beam conditions and power of the kicker amplifiers. Necessary improvements in the phase monitor performance and optics corrections made to remove the phase-energy dependence via R56 in order to achieve this level of stability are also discussed.CERN-ACC-2016-205CLIC-Note-1092oai:inspirehep.net:14702932016
spellingShingle Accelerators and Storage Rings
Roberts, Jack
Andersson, Alexandra
Burrows, Philip
Christian, Glenn
Corsini, Roberto
Ghigo, Andrea
Marcellini, Fabio
Perry, Colin
Skowroński, Piotr
Demonstration of CLIC Level Phase Stability using a High Bandwidth, Low Latency Drive Beam Phase Feedforward System at the CLIC Test Facility CTF3
title Demonstration of CLIC Level Phase Stability using a High Bandwidth, Low Latency Drive Beam Phase Feedforward System at the CLIC Test Facility CTF3
title_full Demonstration of CLIC Level Phase Stability using a High Bandwidth, Low Latency Drive Beam Phase Feedforward System at the CLIC Test Facility CTF3
title_fullStr Demonstration of CLIC Level Phase Stability using a High Bandwidth, Low Latency Drive Beam Phase Feedforward System at the CLIC Test Facility CTF3
title_full_unstemmed Demonstration of CLIC Level Phase Stability using a High Bandwidth, Low Latency Drive Beam Phase Feedforward System at the CLIC Test Facility CTF3
title_short Demonstration of CLIC Level Phase Stability using a High Bandwidth, Low Latency Drive Beam Phase Feedforward System at the CLIC Test Facility CTF3
title_sort demonstration of clic level phase stability using a high bandwidth, low latency drive beam phase feedforward system at the clic test facility ctf3
topic Accelerators and Storage Rings
url https://dx.doi.org/10.18429/JACoW-IPAC2016-WEPOR006
http://cds.cern.ch/record/2207420
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