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Overall Injection Strategy for FCC-ee
The Future Circular electron-positron Collider (FCC-ee) requires fast cycling injectors with very low extraction emittances to provide and maintain extreme luminosities at center of mass energy varying between 91.2-385 GeV in the collider. For this reason, the whole injector complex table is prepare...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
JACOW
2019
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.18429/JACoW-eeFACT2018-TUPAB03 http://cds.cern.ch/record/2713264 |
_version_ | 1780965382456082432 |
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author | Ogur, Salim Aiba, Masamitsu Antoniou, Fanouria Barnyakov, Alexey Chaikovska, Iryna Charles, Tessa Chehab, Robert Etisken, Ozgur Furukawa, Kazuro Härer, Bastian Holzer, Bernhard Iida, Naoko Kamitani, Takuya Levichev, Alexey Martyshkin, Pavel Miyahara, Fusashi Nikiforov, Danila Ozcan, Erkcan Papaphilippou, Yannis Polozov, Sergey Rinolfi, Louis Tydecks, Tobias Zimmermann, Frank |
author_facet | Ogur, Salim Aiba, Masamitsu Antoniou, Fanouria Barnyakov, Alexey Chaikovska, Iryna Charles, Tessa Chehab, Robert Etisken, Ozgur Furukawa, Kazuro Härer, Bastian Holzer, Bernhard Iida, Naoko Kamitani, Takuya Levichev, Alexey Martyshkin, Pavel Miyahara, Fusashi Nikiforov, Danila Ozcan, Erkcan Papaphilippou, Yannis Polozov, Sergey Rinolfi, Louis Tydecks, Tobias Zimmermann, Frank |
author_sort | Ogur, Salim |
collection | CERN |
description | The Future Circular electron-positron Collider (FCC-ee) requires fast cycling injectors with very low extraction emittances to provide and maintain extreme luminosities at center of mass energy varying between 91.2-385 GeV in the collider. For this reason, the whole injector complex table is prepared by putting into consideration the minimum fill time from scratch, bootstrapping, transmission efficiency as well as store time of the beams in synchrotrons to approach equilibrium emittances. The current injector baseline contains 6 GeV S-band linac, a damping ring at 1.54 GeV, a prebooster to accelerate from 6 to 20 GeV, which is followed by 98-km top up booster accelerating up to final collision energies. Acceleration from 6 GeV to 20 GeV can be provided either by Super Proton Synchrotron (SPS) of CERN or a new synchrotron or C-Band linac, distinctively, which all options are retained. In this paper, the current status of the whole FCC-ee injector complex and injection strategies are discussed. |
id | oai-inspirehep.net-1736336 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2019 |
publisher | JACOW |
record_format | invenio |
spelling | oai-inspirehep.net-17363362020-03-27T21:36:39Zdoi:10.18429/JACoW-eeFACT2018-TUPAB03http://cds.cern.ch/record/2713264engOgur, SalimAiba, MasamitsuAntoniou, FanouriaBarnyakov, AlexeyChaikovska, IrynaCharles, TessaChehab, RobertEtisken, OzgurFurukawa, KazuroHärer, BastianHolzer, BernhardIida, NaokoKamitani, TakuyaLevichev, AlexeyMartyshkin, PavelMiyahara, FusashiNikiforov, DanilaOzcan, ErkcanPapaphilippou, YannisPolozov, SergeyRinolfi, LouisTydecks, TobiasZimmermann, FrankOverall Injection Strategy for FCC-eeAccelerators and Storage RingsThe Future Circular electron-positron Collider (FCC-ee) requires fast cycling injectors with very low extraction emittances to provide and maintain extreme luminosities at center of mass energy varying between 91.2-385 GeV in the collider. For this reason, the whole injector complex table is prepared by putting into consideration the minimum fill time from scratch, bootstrapping, transmission efficiency as well as store time of the beams in synchrotrons to approach equilibrium emittances. The current injector baseline contains 6 GeV S-band linac, a damping ring at 1.54 GeV, a prebooster to accelerate from 6 to 20 GeV, which is followed by 98-km top up booster accelerating up to final collision energies. Acceleration from 6 GeV to 20 GeV can be provided either by Super Proton Synchrotron (SPS) of CERN or a new synchrotron or C-Band linac, distinctively, which all options are retained. In this paper, the current status of the whole FCC-ee injector complex and injection strategies are discussed.JACOWoai:inspirehep.net:17363362019 |
spellingShingle | Accelerators and Storage Rings Ogur, Salim Aiba, Masamitsu Antoniou, Fanouria Barnyakov, Alexey Chaikovska, Iryna Charles, Tessa Chehab, Robert Etisken, Ozgur Furukawa, Kazuro Härer, Bastian Holzer, Bernhard Iida, Naoko Kamitani, Takuya Levichev, Alexey Martyshkin, Pavel Miyahara, Fusashi Nikiforov, Danila Ozcan, Erkcan Papaphilippou, Yannis Polozov, Sergey Rinolfi, Louis Tydecks, Tobias Zimmermann, Frank Overall Injection Strategy for FCC-ee |
title | Overall Injection Strategy for FCC-ee |
title_full | Overall Injection Strategy for FCC-ee |
title_fullStr | Overall Injection Strategy for FCC-ee |
title_full_unstemmed | Overall Injection Strategy for FCC-ee |
title_short | Overall Injection Strategy for FCC-ee |
title_sort | overall injection strategy for fcc-ee |
topic | Accelerators and Storage Rings |
url | https://dx.doi.org/10.18429/JACoW-eeFACT2018-TUPAB03 http://cds.cern.ch/record/2713264 |
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