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3.5 GeV Superconducting Stacking Ring for Compton Based Polarized Positrons Source of CLIC
This paper describes a superconducting storage ring dedicated to positron accumulation as part of a polarized positron source based on Compton scattering in a Compton storage ring (CR). The superconducting stacking ring (SR) can provide a synchrotron damping time of order 250µs. Together with a nov...
Autores principales: | , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2013
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Materias: | |
Acceso en línea: | http://cds.cern.ch/record/1588127 |
_version_ | 1780931099367571456 |
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author | Rinolfi, L Zimmermann, F Bulyak, E Gladkikh, P Kalamaiko, A Omori, T Urakawa, J Yokoya, K |
author_facet | Rinolfi, L Zimmermann, F Bulyak, E Gladkikh, P Kalamaiko, A Omori, T Urakawa, J Yokoya, K |
author_sort | Rinolfi, L |
collection | CERN |
description | This paper describes a superconducting storage ring dedicated to positron accumulation as part of a polarized positron source based on Compton scattering in a Compton storage ring (CR). The superconducting stacking ring (SR) can provide a synchrotron damping time of order 250µs. Together with a novel combined injection scheme in the longitudinal and transverse plane, such a ring may solve the problem of accumulating a positron beam of 4 * 109e+ /bunch and 312 bunches which is the beam charge required for CLIC. |
id | cern-1588127 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2013 |
record_format | invenio |
spelling | cern-15881272023-07-20T15:05:53Zhttp://cds.cern.ch/record/1588127engRinolfi, LZimmermann, FBulyak, EGladkikh, PKalamaiko, AOmori, TUrakawa, JYokoya, K3.5 GeV Superconducting Stacking Ring for Compton Based Polarized Positrons Source of CLICAccelerators and Storage RingsThis paper describes a superconducting storage ring dedicated to positron accumulation as part of a polarized positron source based on Compton scattering in a Compton storage ring (CR). The superconducting stacking ring (SR) can provide a synchrotron damping time of order 250µs. Together with a novel combined injection scheme in the longitudinal and transverse plane, such a ring may solve the problem of accumulating a positron beam of 4 * 109e+ /bunch and 312 bunches which is the beam charge required for CLIC.CERN-ACC-2013-0156CLIC-Note-1019oai:cds.cern.ch:15881272013-05-12 |
spellingShingle | Accelerators and Storage Rings Rinolfi, L Zimmermann, F Bulyak, E Gladkikh, P Kalamaiko, A Omori, T Urakawa, J Yokoya, K 3.5 GeV Superconducting Stacking Ring for Compton Based Polarized Positrons Source of CLIC |
title | 3.5 GeV Superconducting Stacking Ring for Compton Based Polarized Positrons Source of CLIC |
title_full | 3.5 GeV Superconducting Stacking Ring for Compton Based Polarized Positrons Source of CLIC |
title_fullStr | 3.5 GeV Superconducting Stacking Ring for Compton Based Polarized Positrons Source of CLIC |
title_full_unstemmed | 3.5 GeV Superconducting Stacking Ring for Compton Based Polarized Positrons Source of CLIC |
title_short | 3.5 GeV Superconducting Stacking Ring for Compton Based Polarized Positrons Source of CLIC |
title_sort | 3.5 gev superconducting stacking ring for compton based polarized positrons source of clic |
topic | Accelerators and Storage Rings |
url | http://cds.cern.ch/record/1588127 |
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