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Commissioning experience and beam physics measurements at the SwissFEL Injector test Facility

The SwissFEL Injector Test Facility operated at the Paul Scherrer Institute between 2010 and 2014, serving as a pilot plant and test bed for the development and realization of SwissFEL, the x-ray Free Electron Laser facility under construction at the same institute. The test facility consisted of a...

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Autores principales: Schietinger, T., Pedrozzi, M., Aiba, M., Arsov, V., Bettoni, S., Beutner, B., Calvi, M., Craievich, P., Dehler, M., Frei, F., Ganter, R., Hauri, C. P., Ischebeck, R., Ivanisenko, Y., Janousch, M., Kaiser, M., Keil, B., Löhl, F., Orlandi, G. L., Ozkan Loch, C., Peier, P., Prat, E., Raguin, J.-Y., Reiche, S., Schilcher, T., Wiegand, P., Zimoch, E., Anicic, D., Armstrong, D., Baldinger, M., Baldinger, R., Bertrand, A., Bitterli, K., Bopp, M., Brands, H., Braun, H. H., Brönnimann, M., Brunnenkant, I., Chevtsov, P., Chrin, J., Citterio, A., Csatari Divall, M., Dach, M., Dax, A., Ditter, R., Divall, E., Falone, A., Fitze, H., Geiselhart, C., Guetg, M. W., Hämmerli, F., Hauff, A., Heiniger, M., Higgs, C., Hugentobler, W., Hunziker, S., Janser, G., Kalantari, B., Kalt, R., Kim, Y., Koprek, W., Korhonen, T., Krempaska, R., Laznovsky, M., Lehner, S., Le Pimpec, F., Lippuner, T., Lutz, H., Mair, S., Marcellini, F., Marinkovic, G., Menzel, R., Milas, N., Pal, T., Pollet, P., Portmann, W., Rezaeizadeh, A., Ritt, S., Rohrer, M., Schär, M., Schebacher, L., Scherrer, St., Schlott, V., Schmidt, T., Schulz, L., Smit, B., Stadler, M., Steffen, Bernd, Stingelin, L., Sturzenegger, W., Treyer, D. M., Trisorio, A., Tron, W., Vicario, C., Zennaro, R., Zimoch, D.
Formato: info:eu-repo/semantics/article
Lenguaje:eng
Publicado: Phys. Rev. Accel. Beams 2016
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevAccelBeams.19.100702
http://cds.cern.ch/record/2268662
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author Schietinger, T.
Pedrozzi, M.
Aiba, M.
Arsov, V.
Bettoni, S.
Beutner, B.
Calvi, M.
Craievich, P.
Dehler, M.
Frei, F.
Ganter, R.
Hauri, C. P.
Ischebeck, R.
Ivanisenko, Y.
Janousch, M.
Kaiser, M.
Keil, B.
Löhl, F.
Orlandi, G. L.
Ozkan Loch, C.
Peier, P.
Prat, E.
Raguin, J.-Y.
Reiche, S.
Schilcher, T.
Wiegand, P.
Zimoch, E.
Anicic, D.
Armstrong, D.
Baldinger, M.
Baldinger, R.
Bertrand, A.
Bitterli, K.
Bopp, M.
Brands, H.
Braun, H. H.
Brönnimann, M.
Brunnenkant, I.
Chevtsov, P.
Chrin, J.
Citterio, A.
Csatari Divall, M.
Dach, M.
Dax, A.
Ditter, R.
Divall, E.
Falone, A.
Fitze, H.
Geiselhart, C.
Guetg, M. W.
Hämmerli, F.
Hauff, A.
Heiniger, M.
Higgs, C.
Hugentobler, W.
Hunziker, S.
Janser, G.
Kalantari, B.
Kalt, R.
Kim, Y.
Koprek, W.
Korhonen, T.
Krempaska, R.
Laznovsky, M.
Lehner, S.
Le Pimpec, F.
Lippuner, T.
Lutz, H.
Mair, S.
Marcellini, F.
Marinkovic, G.
Menzel, R.
Milas, N.
Pal, T.
Pollet, P.
Portmann, W.
Rezaeizadeh, A.
Ritt, S.
Rohrer, M.
Schär, M.
Schebacher, L.
Scherrer, St.
Schlott, V.
Schmidt, T.
Schulz, L.
Smit, B.
Stadler, M.
Steffen, Bernd
Stingelin, L.
Sturzenegger, W.
Treyer, D. M.
Trisorio, A.
Tron, W.
Vicario, C.
Zennaro, R.
Zimoch, D.
author_facet Schietinger, T.
Pedrozzi, M.
Aiba, M.
Arsov, V.
Bettoni, S.
Beutner, B.
Calvi, M.
Craievich, P.
Dehler, M.
Frei, F.
Ganter, R.
Hauri, C. P.
Ischebeck, R.
Ivanisenko, Y.
Janousch, M.
Kaiser, M.
Keil, B.
Löhl, F.
Orlandi, G. L.
Ozkan Loch, C.
Peier, P.
Prat, E.
Raguin, J.-Y.
Reiche, S.
Schilcher, T.
Wiegand, P.
Zimoch, E.
Anicic, D.
Armstrong, D.
Baldinger, M.
Baldinger, R.
Bertrand, A.
Bitterli, K.
Bopp, M.
Brands, H.
Braun, H. H.
Brönnimann, M.
Brunnenkant, I.
Chevtsov, P.
Chrin, J.
Citterio, A.
Csatari Divall, M.
Dach, M.
Dax, A.
Ditter, R.
Divall, E.
Falone, A.
Fitze, H.
Geiselhart, C.
Guetg, M. W.
Hämmerli, F.
Hauff, A.
Heiniger, M.
Higgs, C.
Hugentobler, W.
Hunziker, S.
Janser, G.
Kalantari, B.
Kalt, R.
Kim, Y.
Koprek, W.
Korhonen, T.
Krempaska, R.
Laznovsky, M.
Lehner, S.
Le Pimpec, F.
Lippuner, T.
Lutz, H.
Mair, S.
Marcellini, F.
Marinkovic, G.
Menzel, R.
Milas, N.
Pal, T.
Pollet, P.
Portmann, W.
Rezaeizadeh, A.
Ritt, S.
Rohrer, M.
Schär, M.
Schebacher, L.
Scherrer, St.
Schlott, V.
Schmidt, T.
Schulz, L.
Smit, B.
Stadler, M.
Steffen, Bernd
Stingelin, L.
Sturzenegger, W.
Treyer, D. M.
Trisorio, A.
Tron, W.
Vicario, C.
Zennaro, R.
Zimoch, D.
author_sort Schietinger, T.
collection CERN
description The SwissFEL Injector Test Facility operated at the Paul Scherrer Institute between 2010 and 2014, serving as a pilot plant and test bed for the development and realization of SwissFEL, the x-ray Free Electron Laser facility under construction at the same institute. The test facility consisted of a laser-driven rf electron gun followed by an S-band booster linac, a magnetic bunch compression chicane and a diagnostic section including atransverse deflecting rf cavity. It delivered electron bunchesof up to200 pC chargeand up to 250 MeV beam energy at a repetition rate of 10 Hz. The measurements performed at the test facility not only demonstrated the beam parameters required to drive the first stage of a FEL facility, but also led to significant advances in instrumentation technologies, beam characterization methods and the generation, transport and compression of ultralow-emittance beams. We give a comprehensive overview of the commissioning experience of the principal subsystems and the beam physics measurements performed during the operation of the test facility, including the results of the test of an in-vacuum undulator prototype generating radiation in the vacuum ultraviolet and optical range.
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language eng
publishDate 2016
publisher Phys. Rev. Accel. Beams
record_format invenio
spelling cern-22686622023-03-12T04:12:25Z doi:10.1103/PhysRevAccelBeams.19.100702 http://cds.cern.ch/record/2268662 eng Schietinger, T. Pedrozzi, M. Aiba, M. Arsov, V. Bettoni, S. Beutner, B. Calvi, M. Craievich, P. Dehler, M. Frei, F. Ganter, R. Hauri, C. P. Ischebeck, R. Ivanisenko, Y. Janousch, M. Kaiser, M. Keil, B. Löhl, F. Orlandi, G. L. Ozkan Loch, C. Peier, P. Prat, E. Raguin, J.-Y. Reiche, S. Schilcher, T. Wiegand, P. Zimoch, E. Anicic, D. Armstrong, D. Baldinger, M. Baldinger, R. Bertrand, A. Bitterli, K. Bopp, M. Brands, H. Braun, H. H. Brönnimann, M. Brunnenkant, I. Chevtsov, P. Chrin, J. Citterio, A. Csatari Divall, M. Dach, M. Dax, A. Ditter, R. Divall, E. Falone, A. Fitze, H. Geiselhart, C. Guetg, M. W. Hämmerli, F. Hauff, A. Heiniger, M. Higgs, C. Hugentobler, W. Hunziker, S. Janser, G. Kalantari, B. Kalt, R. Kim, Y. Koprek, W. Korhonen, T. Krempaska, R. Laznovsky, M. Lehner, S. Le Pimpec, F. Lippuner, T. Lutz, H. Mair, S. Marcellini, F. Marinkovic, G. Menzel, R. Milas, N. Pal, T. Pollet, P. Portmann, W. Rezaeizadeh, A. Ritt, S. Rohrer, M. Schär, M. Schebacher, L. Scherrer, St. Schlott, V. Schmidt, T. Schulz, L. Smit, B. Stadler, M. Steffen, Bernd Stingelin, L. Sturzenegger, W. Treyer, D. M. Trisorio, A. Tron, W. Vicario, C. Zennaro, R. Zimoch, D. Commissioning experience and beam physics measurements at the SwissFEL Injector test Facility Accelerators and Storage Rings 12: Innovative Radio Frequency Technologies (RF) 12.1: Coordination and Communication The SwissFEL Injector Test Facility operated at the Paul Scherrer Institute between 2010 and 2014, serving as a pilot plant and test bed for the development and realization of SwissFEL, the x-ray Free Electron Laser facility under construction at the same institute. The test facility consisted of a laser-driven rf electron gun followed by an S-band booster linac, a magnetic bunch compression chicane and a diagnostic section including atransverse deflecting rf cavity. It delivered electron bunchesof up to200 pC chargeand up to 250 MeV beam energy at a repetition rate of 10 Hz. The measurements performed at the test facility not only demonstrated the beam parameters required to drive the first stage of a FEL facility, but also led to significant advances in instrumentation technologies, beam characterization methods and the generation, transport and compression of ultralow-emittance beams. We give a comprehensive overview of the commissioning experience of the principal subsystems and the beam physics measurements performed during the operation of the test facility, including the results of the test of an in-vacuum undulator prototype generating radiation in the vacuum ultraviolet and optical range. The SwissFEL Injector Test Facility operated at the Paul Scherrer Institute between 2010 and 2014, serving as a pilot plant and test bed for the development and realization of SwissFEL, the x-ray Free-Electron Laser facility under construction at the same institute. The test facility consisted of a laser-driven rf electron gun followed by an S-band booster linac, a magnetic bunch compression chicane and a diagnostic section including a transverse deflecting rf cavity. It delivered electron bunches of up to 200 pC charge and up to 250 MeV beam energy at a repetition rate of 10 Hz. The measurements performed at the test facility not only demonstrated the beam parameters required to drive the first stage of an FEL facility, but also led to significant advances in instrumentation technologies, beam characterization methods and the generation, transport and compression of ultralow-emittance beams. We give a comprehensive overview of the commissioning experience of the principal subsystems and the beam physics measurements performed during the operation of the test facility, including the results of the test of an in-vacuum undulator prototype generating radiation in the vacuum ultraviolet and optical range. The SwissFEL Injector Test Facility operated at the Paul Scherrer Institute between 2010 and 2014, serving as a pilot plant and testbed for the development and realization of SwissFEL, the X-ray Free-Electron Laser facility under construction at the same institute. The test facility consisted of a laser-driven rf electron gun followed by an S-band booster linac, a magnetic bunch compression chicane and a diagnostic section including a transverse deflecting rf cavity. It delivered electron bunches of up to 200 pC charge and up to 250 MeV beam energy at a repetition rate of 10 Hz. The measurements performed at the test facility not only demonstrated the beam parameters required to drive the first stage of an FEL facility, but also led to significant advances in instrumentation technologies, beam characterization methods and the generation, transport and compression of ultra-low-emittance beams. We give a comprehensive overview of the commissioning experience of the principal subsystems and the beam physics measurements performed during the operation of the test facility, including the results of the test of an in-vacuum undulator prototype generating radiation in the vacuum ultraviolet and optical range. info:eu-repo/grantAgreement/EC/FP7/312453 info:eu-repo/semantics/openAccess Education Level info:eu-repo/semantics/article http://cds.cern.ch/record/2268662 Phys. Rev. Accel. Beams Phys. Rev. Accel. Beams, (2016) pp. 100702 2016-10-26
spellingShingle Accelerators and Storage Rings
12: Innovative Radio Frequency Technologies (RF)
12.1: Coordination and Communication
Schietinger, T.
Pedrozzi, M.
Aiba, M.
Arsov, V.
Bettoni, S.
Beutner, B.
Calvi, M.
Craievich, P.
Dehler, M.
Frei, F.
Ganter, R.
Hauri, C. P.
Ischebeck, R.
Ivanisenko, Y.
Janousch, M.
Kaiser, M.
Keil, B.
Löhl, F.
Orlandi, G. L.
Ozkan Loch, C.
Peier, P.
Prat, E.
Raguin, J.-Y.
Reiche, S.
Schilcher, T.
Wiegand, P.
Zimoch, E.
Anicic, D.
Armstrong, D.
Baldinger, M.
Baldinger, R.
Bertrand, A.
Bitterli, K.
Bopp, M.
Brands, H.
Braun, H. H.
Brönnimann, M.
Brunnenkant, I.
Chevtsov, P.
Chrin, J.
Citterio, A.
Csatari Divall, M.
Dach, M.
Dax, A.
Ditter, R.
Divall, E.
Falone, A.
Fitze, H.
Geiselhart, C.
Guetg, M. W.
Hämmerli, F.
Hauff, A.
Heiniger, M.
Higgs, C.
Hugentobler, W.
Hunziker, S.
Janser, G.
Kalantari, B.
Kalt, R.
Kim, Y.
Koprek, W.
Korhonen, T.
Krempaska, R.
Laznovsky, M.
Lehner, S.
Le Pimpec, F.
Lippuner, T.
Lutz, H.
Mair, S.
Marcellini, F.
Marinkovic, G.
Menzel, R.
Milas, N.
Pal, T.
Pollet, P.
Portmann, W.
Rezaeizadeh, A.
Ritt, S.
Rohrer, M.
Schär, M.
Schebacher, L.
Scherrer, St.
Schlott, V.
Schmidt, T.
Schulz, L.
Smit, B.
Stadler, M.
Steffen, Bernd
Stingelin, L.
Sturzenegger, W.
Treyer, D. M.
Trisorio, A.
Tron, W.
Vicario, C.
Zennaro, R.
Zimoch, D.
Commissioning experience and beam physics measurements at the SwissFEL Injector test Facility
title Commissioning experience and beam physics measurements at the SwissFEL Injector test Facility
title_full Commissioning experience and beam physics measurements at the SwissFEL Injector test Facility
title_fullStr Commissioning experience and beam physics measurements at the SwissFEL Injector test Facility
title_full_unstemmed Commissioning experience and beam physics measurements at the SwissFEL Injector test Facility
title_short Commissioning experience and beam physics measurements at the SwissFEL Injector test Facility
title_sort commissioning experience and beam physics measurements at the swissfel injector test facility
topic Accelerators and Storage Rings
12: Innovative Radio Frequency Technologies (RF)
12.1: Coordination and Communication
url https://dx.doi.org/10.1103/PhysRevAccelBeams.19.100702
http://cds.cern.ch/record/2268662
http://cds.cern.ch/record/2268662
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