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Cold antimatter plasmas, and aspirations for cold antihydrogen

Only our ATRAP Collaboration is yet able to accumulate and store 4.2 K antiprotons and positrons. The antiprotons come initially from the new Antiproton Decelerator facility at CERN. Good control of such cold antimatter plasmas is key to aspirations to produce and study antihydrogen atoms that are c...

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Detalles Bibliográficos
Autores principales: Gabrielse, G, Tan, J N, Bowden, N S, Oxley, P, Storry, C H, Wessels, N, Speck, A K, Estrada, J, Yesley, P S, Squires, T, Grzonka, D, Oelert, Walter, Schepers, G, Sefzick, T, Walz, J
Lenguaje:eng
Publicado: 2002
Materias:
Acceso en línea:https://dx.doi.org/10.1063/1.1454267
http://cds.cern.ch/record/560334
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author Gabrielse, G
Tan, J N
Bowden, N S
Oxley, P
Storry, C H
Wessels, N
Speck, A K
Estrada, J
Yesley, P S
Squires, T
Grzonka, D
Oelert, Walter
Schepers, G
Sefzick, T
Walz, J
author_facet Gabrielse, G
Tan, J N
Bowden, N S
Oxley, P
Storry, C H
Wessels, N
Speck, A K
Estrada, J
Yesley, P S
Squires, T
Grzonka, D
Oelert, Walter
Schepers, G
Sefzick, T
Walz, J
author_sort Gabrielse, G
collection CERN
description Only our ATRAP Collaboration is yet able to accumulate and store 4.2 K antiprotons and positrons. The antiprotons come initially from the new Antiproton Decelerator facility at CERN. Good control of such cold antimatter plasmas is key to aspirations to produce and study antihydrogen atoms that are cold enough to confine by their magnetic moments. In the closest approach to cold antihydrogen realized to date, the cold positrons have been used to cool antiprotons, the first time that positron cooling has ever been observed. The Penning- Ioffe trap, one possibility for simultaneously confining antihydrogen and the cold ingredients from which it is formed, is introduced and discussed. (27 refs).
id cern-560334
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2002
record_format invenio
spelling cern-5603342020-08-28T08:05:20Zdoi:10.1063/1.1454267http://cds.cern.ch/record/560334engGabrielse, GTan, J NBowden, N SOxley, PStorry, C HWessels, NSpeck, A KEstrada, JYesley, P SSquires, TGrzonka, DOelert, WalterSchepers, GSefzick, TWalz, JCold antimatter plasmas, and aspirations for cold antihydrogenAccelerators and Storage RingsOnly our ATRAP Collaboration is yet able to accumulate and store 4.2 K antiprotons and positrons. The antiprotons come initially from the new Antiproton Decelerator facility at CERN. Good control of such cold antimatter plasmas is key to aspirations to produce and study antihydrogen atoms that are cold enough to confine by their magnetic moments. In the closest approach to cold antihydrogen realized to date, the cold positrons have been used to cool antiprotons, the first time that positron cooling has ever been observed. The Penning- Ioffe trap, one possibility for simultaneously confining antihydrogen and the cold ingredients from which it is formed, is introduced and discussed. (27 refs).oai:cds.cern.ch:5603342002
spellingShingle Accelerators and Storage Rings
Gabrielse, G
Tan, J N
Bowden, N S
Oxley, P
Storry, C H
Wessels, N
Speck, A K
Estrada, J
Yesley, P S
Squires, T
Grzonka, D
Oelert, Walter
Schepers, G
Sefzick, T
Walz, J
Cold antimatter plasmas, and aspirations for cold antihydrogen
title Cold antimatter plasmas, and aspirations for cold antihydrogen
title_full Cold antimatter plasmas, and aspirations for cold antihydrogen
title_fullStr Cold antimatter plasmas, and aspirations for cold antihydrogen
title_full_unstemmed Cold antimatter plasmas, and aspirations for cold antihydrogen
title_short Cold antimatter plasmas, and aspirations for cold antihydrogen
title_sort cold antimatter plasmas, and aspirations for cold antihydrogen
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1063/1.1454267
http://cds.cern.ch/record/560334
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