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X-band Technology for FEL Sources
As is widely recognized, fourth generation Light Sources are based on FELs driven by Linacs. Soft and hard X-ray FEL facilities are presently operational at several laboratories, SLAC (LCLS), Spring-8 (SACLA), Elettra-Sincrotrone Trieste (FERMI), DESY (FLASH), or are in the construction phase, PSI (...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2014
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Materias: | |
Acceso en línea: | http://cds.cern.ch/record/2062591 |
_version_ | 1780948551953547264 |
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author | D'Auria, Gerardo Di Mitri, Simone Serpico, Claudio Adli, Erik Aksoy, Avni Yavaş, Omer Angal-Kalinin, Deepa Clarke, James Bocchetta, Carlo Wawrzyniak, Adriana Boland, Mark Charles, Tessa Dowd, Rohan LeBlanc, Gregory Tan, Yaw-Ren Wootton, Kent Zhu, Dajun Burt, Graeme Catalán Lasheras, Nuria Grudiev, Alexej Latina, Andrea Schulte, Daniel Stapnes, Steinar Syratchev, Igor Wuensch, Walter Fang, Wencheng Gu, Qiang Gazis, Evangelos Jacewicz, Marek Ruber, Roger Ziemann, Volker Janssen, Xander |
author_facet | D'Auria, Gerardo Di Mitri, Simone Serpico, Claudio Adli, Erik Aksoy, Avni Yavaş, Omer Angal-Kalinin, Deepa Clarke, James Bocchetta, Carlo Wawrzyniak, Adriana Boland, Mark Charles, Tessa Dowd, Rohan LeBlanc, Gregory Tan, Yaw-Ren Wootton, Kent Zhu, Dajun Burt, Graeme Catalán Lasheras, Nuria Grudiev, Alexej Latina, Andrea Schulte, Daniel Stapnes, Steinar Syratchev, Igor Wuensch, Walter Fang, Wencheng Gu, Qiang Gazis, Evangelos Jacewicz, Marek Ruber, Roger Ziemann, Volker Janssen, Xander |
author_sort | D'Auria, Gerardo |
collection | CERN |
description | As is widely recognized, fourth generation Light Sources are based on FELs driven by Linacs. Soft and hard X-ray FEL facilities are presently operational at several laboratories, SLAC (LCLS), Spring-8 (SACLA), Elettra-Sincrotrone Trieste (FERMI), DESY (FLASH), or are in the construction phase, PSI (SwissFEL), PAL (PAL-XFEL), DESY (European X-FEL), SLAC (LCLS II), or are newly proposed in many laboratories. Most of the above mentioned facilities use NC S-band (3 GHz) or C-band (6 GHz) linacs for generating a multi-GeV low emittance beam. The use of the C-band increases the linac operating gradients, with an overall reduction of the machine length and cost. These advantages, however, can be further enhanced by using X-band (12 GHz) linacs that operate with gradients twice that given by C-band technology. With the low bunch charge option, currently considered for future X-ray FELs, X-band technology offers a low cost and compact solution for generating multi-GeV, low emittance bunches. The paper reports the ongoing activities in the framework of a collaboration among several laboratories for the development and validation of X-band technology for FEL based photon sources. |
id | oai-inspirehep.net-1363319 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2014 |
record_format | invenio |
spelling | oai-inspirehep.net-13633192019-09-30T06:29:59Zhttp://cds.cern.ch/record/2062591engD'Auria, GerardoDi Mitri, SimoneSerpico, ClaudioAdli, ErikAksoy, AvniYavaş, OmerAngal-Kalinin, DeepaClarke, JamesBocchetta, CarloWawrzyniak, AdrianaBoland, MarkCharles, TessaDowd, RohanLeBlanc, GregoryTan, Yaw-RenWootton, KentZhu, DajunBurt, GraemeCatalán Lasheras, NuriaGrudiev, AlexejLatina, AndreaSchulte, DanielStapnes, SteinarSyratchev, IgorWuensch, WalterFang, WenchengGu, QiangGazis, EvangelosJacewicz, MarekRuber, RogerZiemann, VolkerJanssen, XanderX-band Technology for FEL SourcesAccelerators and Storage RingsAs is widely recognized, fourth generation Light Sources are based on FELs driven by Linacs. Soft and hard X-ray FEL facilities are presently operational at several laboratories, SLAC (LCLS), Spring-8 (SACLA), Elettra-Sincrotrone Trieste (FERMI), DESY (FLASH), or are in the construction phase, PSI (SwissFEL), PAL (PAL-XFEL), DESY (European X-FEL), SLAC (LCLS II), or are newly proposed in many laboratories. Most of the above mentioned facilities use NC S-band (3 GHz) or C-band (6 GHz) linacs for generating a multi-GeV low emittance beam. The use of the C-band increases the linac operating gradients, with an overall reduction of the machine length and cost. These advantages, however, can be further enhanced by using X-band (12 GHz) linacs that operate with gradients twice that given by C-band technology. With the low bunch charge option, currently considered for future X-ray FELs, X-band technology offers a low cost and compact solution for generating multi-GeV, low emittance bunches. The paper reports the ongoing activities in the framework of a collaboration among several laboratories for the development and validation of X-band technology for FEL based photon sources.CERN-ACC-2014-393oai:inspirehep.net:13633192014 |
spellingShingle | Accelerators and Storage Rings D'Auria, Gerardo Di Mitri, Simone Serpico, Claudio Adli, Erik Aksoy, Avni Yavaş, Omer Angal-Kalinin, Deepa Clarke, James Bocchetta, Carlo Wawrzyniak, Adriana Boland, Mark Charles, Tessa Dowd, Rohan LeBlanc, Gregory Tan, Yaw-Ren Wootton, Kent Zhu, Dajun Burt, Graeme Catalán Lasheras, Nuria Grudiev, Alexej Latina, Andrea Schulte, Daniel Stapnes, Steinar Syratchev, Igor Wuensch, Walter Fang, Wencheng Gu, Qiang Gazis, Evangelos Jacewicz, Marek Ruber, Roger Ziemann, Volker Janssen, Xander X-band Technology for FEL Sources |
title | X-band Technology for FEL Sources |
title_full | X-band Technology for FEL Sources |
title_fullStr | X-band Technology for FEL Sources |
title_full_unstemmed | X-band Technology for FEL Sources |
title_short | X-band Technology for FEL Sources |
title_sort | x-band technology for fel sources |
topic | Accelerators and Storage Rings |
url | http://cds.cern.ch/record/2062591 |
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