First observation of luminosity-driven extraction using channeling with a bent crystal
Luminosity-driven channeling extraction has been observed for the first time using a 900 GeV circulating proton beam at the superconducting Fermilab Tevatron. The extraction efficiency was found to be about 30%. A 150 kHz beam was obtained during luminosity-driven extraction with a tolerable backgro...
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1998-06-01
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Series: | Physical Review Special Topics. Accelerators and Beams |
Online Access: | http://doi.org/10.1103/PhysRevSTAB.1.022801 |
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doaj-cee2c63897fd4ae7b937782529c9c89a2020-11-24T20:48:53ZengAmerican Physical SocietyPhysical Review Special Topics. Accelerators and Beams1098-44021998-06-011202280110.1103/PhysRevSTAB.1.022801First observation of luminosity-driven extraction using channeling with a bent crystalR. A. Carrigan, Jr.D. ChenG. JacksonN. MokhovC. T. MurphyS. I. BakerS. A. BogaczD. ClineS. RamachandranJ. RhoadesJ. RosenzweigA. AseevV. BiryukovA. TaratinJ. A. EllisonA. KhanzadeevY. ProkofievaV. SamsonovG. SolodovB. NewbergerE. TsyganovH.-J. ShihW. GabellaB. CoxV. GolovatyukA. McManusLuminosity-driven channeling extraction has been observed for the first time using a 900 GeV circulating proton beam at the superconducting Fermilab Tevatron. The extraction efficiency was found to be about 30%. A 150 kHz beam was obtained during luminosity-driven extraction with a tolerable background rate at the collider experiments. A 900 kHz beam was obtained when the background limits were doubled. This is the highest energy at which channeling has been observed.http://doi.org/10.1103/PhysRevSTAB.1.022801 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
R. A. Carrigan, Jr. D. Chen G. Jackson N. Mokhov C. T. Murphy S. I. Baker S. A. Bogacz D. Cline S. Ramachandran J. Rhoades J. Rosenzweig A. Aseev V. Biryukov A. Taratin J. A. Ellison A. Khanzadeev Y. Prokofieva V. Samsonov G. Solodov B. Newberger E. Tsyganov H.-J. Shih W. Gabella B. Cox V. Golovatyuk A. McManus |
spellingShingle |
R. A. Carrigan, Jr. D. Chen G. Jackson N. Mokhov C. T. Murphy S. I. Baker S. A. Bogacz D. Cline S. Ramachandran J. Rhoades J. Rosenzweig A. Aseev V. Biryukov A. Taratin J. A. Ellison A. Khanzadeev Y. Prokofieva V. Samsonov G. Solodov B. Newberger E. Tsyganov H.-J. Shih W. Gabella B. Cox V. Golovatyuk A. McManus First observation of luminosity-driven extraction using channeling with a bent crystal Physical Review Special Topics. Accelerators and Beams |
author_facet |
R. A. Carrigan, Jr. D. Chen G. Jackson N. Mokhov C. T. Murphy S. I. Baker S. A. Bogacz D. Cline S. Ramachandran J. Rhoades J. Rosenzweig A. Aseev V. Biryukov A. Taratin J. A. Ellison A. Khanzadeev Y. Prokofieva V. Samsonov G. Solodov B. Newberger E. Tsyganov H.-J. Shih W. Gabella B. Cox V. Golovatyuk A. McManus |
author_sort |
R. A. Carrigan, Jr. |
title |
First observation of luminosity-driven extraction using channeling with a bent crystal |
title_short |
First observation of luminosity-driven extraction using channeling with a bent crystal |
title_full |
First observation of luminosity-driven extraction using channeling with a bent crystal |
title_fullStr |
First observation of luminosity-driven extraction using channeling with a bent crystal |
title_full_unstemmed |
First observation of luminosity-driven extraction using channeling with a bent crystal |
title_sort |
first observation of luminosity-driven extraction using channeling with a bent crystal |
publisher |
American Physical Society |
series |
Physical Review Special Topics. Accelerators and Beams |
issn |
1098-4402 |
publishDate |
1998-06-01 |
description |
Luminosity-driven channeling extraction has been observed for the first time using a 900 GeV circulating proton beam at the superconducting Fermilab Tevatron. The extraction efficiency was found to be about 30%. A 150 kHz beam was obtained during luminosity-driven extraction with a tolerable background rate at the collider experiments. A 900 kHz beam was obtained when the background limits were doubled. This is the highest energy at which channeling has been observed. |
url |
http://doi.org/10.1103/PhysRevSTAB.1.022801 |
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