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author Bogacz, Alex
Angal-Kalinin, Deepa
Arduini, Gianluigi
Bousson, Sébastien
Brüning, Oliver
Calaga, Rama
Chaikovska, Iryna
Douglas, David
Dr Schirm, Karl-Martin
Gerigk, Frank
Hannon, Fay
Holzer, Bernhard
Hounsell, Benjamin
Hutton, Andrew
Jensen, Erk
Kaabi, Walid
Klein, Max
Klein, Uta
Kostka, Peter
Levichev, Evgeny
Longuevergne, David
Marhauser, Frank
McKenzie, Julian
Milanese, Attilio
Militsyn, Boris
Montesinos, Eric
Olivier, Gilles
Olry, Guillaume
Pellegrini, Dario
Pupkov, Yuriy
Rimmer, Robert
Roblin, Yves
Stocchi, Achille
Tennant, Chris
Thonet, Pierre-Alexandre
Vallerand, Cynthia
Valloni, Alessandra
Welsch, Carsten
Williams, Peter
author_facet Bogacz, Alex
Angal-Kalinin, Deepa
Arduini, Gianluigi
Bousson, Sébastien
Brüning, Oliver
Calaga, Rama
Chaikovska, Iryna
Douglas, David
Dr Schirm, Karl-Martin
Gerigk, Frank
Hannon, Fay
Holzer, Bernhard
Hounsell, Benjamin
Hutton, Andrew
Jensen, Erk
Kaabi, Walid
Klein, Max
Klein, Uta
Kostka, Peter
Levichev, Evgeny
Longuevergne, David
Marhauser, Frank
McKenzie, Julian
Milanese, Attilio
Militsyn, Boris
Montesinos, Eric
Olivier, Gilles
Olry, Guillaume
Pellegrini, Dario
Pupkov, Yuriy
Rimmer, Robert
Roblin, Yves
Stocchi, Achille
Tennant, Chris
Thonet, Pierre-Alexandre
Vallerand, Cynthia
Valloni, Alessandra
Welsch, Carsten
Williams, Peter
author_sort Bogacz, Alex
collection CERN
description PERLE (Powerful ERL for Experiments) is a novel ERL test facility, initially proposed to validate choices for a 60 GeV ERL foreseen in the design of the LHeC and the FCC-eh. Its main thrust is to probe high current, CW, multi-pass operation with superconducting cavities at 802 MHz (and perhaps testing other frequencies of interest). With very high virtual beam power (~ 10 MW), PERLE offers an opportunity for controllable study of every beam dynamic effect of interest in the next generation of ERL design; becoming a ‘stepping stone' between present state-of-art 1 MW ERLs and future 100 MW scale applications. PERLE design features Flexible Momentum Compaction lattice architecture for six vertically stacked return arcs and a high-current, 6 MeV, photo-injector. With only one pair of 4 cavity cryomodules, 400 MeV beam energy can be reached in 3 re-circulation passes, with beam currents in excess of 15 mA. The beam is decelerated in 3 consecutive passes back to the injection energy, transferring virtually stored energy back to the RF. This unique facility will serve as a test-bed for high current ERL technologies, as well as a user facility in low energy electron and photon physics.
id oai-inspirehep.net-1690024
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2018
record_format invenio
spelling oai-inspirehep.net-16900242019-09-30T06:29:59Zdoi:10.18429/JACoW-IPAC2018-THPMK105http://cds.cern.ch/record/2646051engBogacz, AlexAngal-Kalinin, DeepaArduini, GianluigiBousson, SébastienBrüning, OliverCalaga, RamaChaikovska, IrynaDouglas, DavidDr Schirm, Karl-MartinGerigk, FrankHannon, FayHolzer, BernhardHounsell, BenjaminHutton, AndrewJensen, ErkKaabi, WalidKlein, MaxKlein, UtaKostka, PeterLevichev, EvgenyLonguevergne, DavidMarhauser, FrankMcKenzie, JulianMilanese, AttilioMilitsyn, BorisMontesinos, EricOlivier, GillesOlry, GuillaumePellegrini, DarioPupkov, YuriyRimmer, RobertRoblin, YvesStocchi, AchilleTennant, ChrisThonet, Pierre-AlexandreVallerand, CynthiaValloni, AlessandraWelsch, CarstenWilliams, PeterPERLE - Lattice Design and Beam Dynamics StudiesAccelerators and Storage RingsPERLE (Powerful ERL for Experiments) is a novel ERL test facility, initially proposed to validate choices for a 60 GeV ERL foreseen in the design of the LHeC and the FCC-eh. Its main thrust is to probe high current, CW, multi-pass operation with superconducting cavities at 802 MHz (and perhaps testing other frequencies of interest). With very high virtual beam power (~ 10 MW), PERLE offers an opportunity for controllable study of every beam dynamic effect of interest in the next generation of ERL design; becoming a ‘stepping stone' between present state-of-art 1 MW ERLs and future 100 MW scale applications. PERLE design features Flexible Momentum Compaction lattice architecture for six vertically stacked return arcs and a high-current, 6 MeV, photo-injector. With only one pair of 4 cavity cryomodules, 400 MeV beam energy can be reached in 3 re-circulation passes, with beam currents in excess of 15 mA. The beam is decelerated in 3 consecutive passes back to the injection energy, transferring virtually stored energy back to the RF. This unique facility will serve as a test-bed for high current ERL technologies, as well as a user facility in low energy electron and photon physics.CERN-ACC-2018-180oai:inspirehep.net:16900242018
spellingShingle Accelerators and Storage Rings
Bogacz, Alex
Angal-Kalinin, Deepa
Arduini, Gianluigi
Bousson, Sébastien
Brüning, Oliver
Calaga, Rama
Chaikovska, Iryna
Douglas, David
Dr Schirm, Karl-Martin
Gerigk, Frank
Hannon, Fay
Holzer, Bernhard
Hounsell, Benjamin
Hutton, Andrew
Jensen, Erk
Kaabi, Walid
Klein, Max
Klein, Uta
Kostka, Peter
Levichev, Evgeny
Longuevergne, David
Marhauser, Frank
McKenzie, Julian
Milanese, Attilio
Militsyn, Boris
Montesinos, Eric
Olivier, Gilles
Olry, Guillaume
Pellegrini, Dario
Pupkov, Yuriy
Rimmer, Robert
Roblin, Yves
Stocchi, Achille
Tennant, Chris
Thonet, Pierre-Alexandre
Vallerand, Cynthia
Valloni, Alessandra
Welsch, Carsten
Williams, Peter
PERLE - Lattice Design and Beam Dynamics Studies
title PERLE - Lattice Design and Beam Dynamics Studies
title_full PERLE - Lattice Design and Beam Dynamics Studies
title_fullStr PERLE - Lattice Design and Beam Dynamics Studies
title_full_unstemmed PERLE - Lattice Design and Beam Dynamics Studies
title_short PERLE - Lattice Design and Beam Dynamics Studies
title_sort perle - lattice design and beam dynamics studies
topic Accelerators and Storage Rings
url https://dx.doi.org/10.18429/JACoW-IPAC2018-THPMK105
http://cds.cern.ch/record/2646051
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