Cargando…

Conceptual Design of a X-FEL Facility using CLIC X-band Accelerating Structure

Within last decade a linear accelerating structure with an average loaded gradient of 100 MV/m at 12 GHz has been demonstrated in the CLIC study. Recently, it has been proposed to use the CLIC structure to drive an FEL linac. In contrast to CLIC the linac would be powered by klystrons not by a drive...

Descripción completa

Detalles Bibliográficos
Autores principales: Aksoy, Avni, Yavaş, Omer, Angal-Kalinin, Deepa, Clarke, James, Boland, Mark, D'Auria, Gerardo, Di Mitri, Simone, Serpico, Claudio, Dogan, Mustafa, Ekelöf, Tord, Ruber, Roger, Ziemann, Volker, Fang, Wencheng, Gu, Qiang, Latina, Andrea, Schulte, Daniel, Stapnes, Steinar, Syratchev, Igor, Wuensch, Walter, Nergiz, Zafer
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:http://cds.cern.ch/record/2003177
_version_ 1780946190197587968
author Aksoy, Avni
Yavaş, Omer
Angal-Kalinin, Deepa
Clarke, James
Boland, Mark
D'Auria, Gerardo
Di Mitri, Simone
Serpico, Claudio
Dogan, Mustafa
Ekelöf, Tord
Ruber, Roger
Ziemann, Volker
Fang, Wencheng
Gu, Qiang
Latina, Andrea
Schulte, Daniel
Stapnes, Steinar
Syratchev, Igor
Wuensch, Walter
Nergiz, Zafer
author_facet Aksoy, Avni
Yavaş, Omer
Angal-Kalinin, Deepa
Clarke, James
Boland, Mark
D'Auria, Gerardo
Di Mitri, Simone
Serpico, Claudio
Dogan, Mustafa
Ekelöf, Tord
Ruber, Roger
Ziemann, Volker
Fang, Wencheng
Gu, Qiang
Latina, Andrea
Schulte, Daniel
Stapnes, Steinar
Syratchev, Igor
Wuensch, Walter
Nergiz, Zafer
author_sort Aksoy, Avni
collection CERN
description Within last decade a linear accelerating structure with an average loaded gradient of 100 MV/m at 12 GHz has been demonstrated in the CLIC study. Recently, it has been proposed to use the CLIC structure to drive an FEL linac. In contrast to CLIC the linac would be powered by klystrons not by a drive beam. The main advantage of this proposal is achieving the required energies in a very short distance, thus the facility would be rather compact. In this study, we present the conceptual design parameters of a facility which could generate laser photon pulses covering the range of 1-75 Angstrom. Shorter wavelengths could also be reached with slightly increasing the energy.
id oai-inspirehep.net-1314507
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
record_format invenio
spelling oai-inspirehep.net-13145072022-08-17T13:30:40Zhttp://cds.cern.ch/record/2003177engAksoy, AvniYavaş, OmerAngal-Kalinin, DeepaClarke, JamesBoland, MarkD'Auria, GerardoDi Mitri, SimoneSerpico, ClaudioDogan, MustafaEkelöf, TordRuber, RogerZiemann, VolkerFang, WenchengGu, QiangLatina, AndreaSchulte, DanielStapnes, SteinarSyratchev, IgorWuensch, WalterNergiz, ZaferConceptual Design of a X-FEL Facility using CLIC X-band Accelerating StructureAccelerators and Storage RingsWithin last decade a linear accelerating structure with an average loaded gradient of 100 MV/m at 12 GHz has been demonstrated in the CLIC study. Recently, it has been proposed to use the CLIC structure to drive an FEL linac. In contrast to CLIC the linac would be powered by klystrons not by a drive beam. The main advantage of this proposal is achieving the required energies in a very short distance, thus the facility would be rather compact. In this study, we present the conceptual design parameters of a facility which could generate laser photon pulses covering the range of 1-75 Angstrom. Shorter wavelengths could also be reached with slightly increasing the energy.oai:inspirehep.net:13145072014
spellingShingle Accelerators and Storage Rings
Aksoy, Avni
Yavaş, Omer
Angal-Kalinin, Deepa
Clarke, James
Boland, Mark
D'Auria, Gerardo
Di Mitri, Simone
Serpico, Claudio
Dogan, Mustafa
Ekelöf, Tord
Ruber, Roger
Ziemann, Volker
Fang, Wencheng
Gu, Qiang
Latina, Andrea
Schulte, Daniel
Stapnes, Steinar
Syratchev, Igor
Wuensch, Walter
Nergiz, Zafer
Conceptual Design of a X-FEL Facility using CLIC X-band Accelerating Structure
title Conceptual Design of a X-FEL Facility using CLIC X-band Accelerating Structure
title_full Conceptual Design of a X-FEL Facility using CLIC X-band Accelerating Structure
title_fullStr Conceptual Design of a X-FEL Facility using CLIC X-band Accelerating Structure
title_full_unstemmed Conceptual Design of a X-FEL Facility using CLIC X-band Accelerating Structure
title_short Conceptual Design of a X-FEL Facility using CLIC X-band Accelerating Structure
title_sort conceptual design of a x-fel facility using clic x-band accelerating structure
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/2003177
work_keys_str_mv AT aksoyavni conceptualdesignofaxfelfacilityusingclicxbandacceleratingstructure
AT yavasomer conceptualdesignofaxfelfacilityusingclicxbandacceleratingstructure
AT angalkalinindeepa conceptualdesignofaxfelfacilityusingclicxbandacceleratingstructure
AT clarkejames conceptualdesignofaxfelfacilityusingclicxbandacceleratingstructure
AT bolandmark conceptualdesignofaxfelfacilityusingclicxbandacceleratingstructure
AT dauriagerardo conceptualdesignofaxfelfacilityusingclicxbandacceleratingstructure
AT dimitrisimone conceptualdesignofaxfelfacilityusingclicxbandacceleratingstructure
AT serpicoclaudio conceptualdesignofaxfelfacilityusingclicxbandacceleratingstructure
AT doganmustafa conceptualdesignofaxfelfacilityusingclicxbandacceleratingstructure
AT ekeloftord conceptualdesignofaxfelfacilityusingclicxbandacceleratingstructure
AT ruberroger conceptualdesignofaxfelfacilityusingclicxbandacceleratingstructure
AT ziemannvolker conceptualdesignofaxfelfacilityusingclicxbandacceleratingstructure
AT fangwencheng conceptualdesignofaxfelfacilityusingclicxbandacceleratingstructure
AT guqiang conceptualdesignofaxfelfacilityusingclicxbandacceleratingstructure
AT latinaandrea conceptualdesignofaxfelfacilityusingclicxbandacceleratingstructure
AT schultedaniel conceptualdesignofaxfelfacilityusingclicxbandacceleratingstructure
AT stapnessteinar conceptualdesignofaxfelfacilityusingclicxbandacceleratingstructure
AT syratchevigor conceptualdesignofaxfelfacilityusingclicxbandacceleratingstructure
AT wuenschwalter conceptualdesignofaxfelfacilityusingclicxbandacceleratingstructure
AT nergizzafer conceptualdesignofaxfelfacilityusingclicxbandacceleratingstructure