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author Ahmadi, M
Alves, B X R
Baker, C J
Bertsche, W
Butler, E
Capra, A
Carruth, C
Cesar, C L
Charlton, M
Cohen, S
Collister, R
Eriksson, S
Evans, A
Evetts, N
Fajans, J
Friesen, T
Fujiwara, M C
Gill, D R
Gutierrez, A
Hangst, J S
Hardy, W N
Hayden, M E
Isaac, C A
Ishida, A
Johnson, M A
Jones, S A
Jonsell, S
Kurchaninov, L
Madsen, N
Mathers, M
Maxwell, D
McKenna, J T K
Menary, S
Michan, J M
Momose, T
Munich, J J
Nolan, P
Olchanski, K
Olin, A
Pusa, P
Rasmussen, C Ø
Robicheaux, F
Sacramento, R L
Sameed, M
Sarid, E
Silveira, D M
Stracka, S
Stutter, G
So, C
Tharp, T D
Thompson, J E
Thompson, R I
van der Werf, D P
Wurtele, J S
author_facet Ahmadi, M
Alves, B X R
Baker, C J
Bertsche, W
Butler, E
Capra, A
Carruth, C
Cesar, C L
Charlton, M
Cohen, S
Collister, R
Eriksson, S
Evans, A
Evetts, N
Fajans, J
Friesen, T
Fujiwara, M C
Gill, D R
Gutierrez, A
Hangst, J S
Hardy, W N
Hayden, M E
Isaac, C A
Ishida, A
Johnson, M A
Jones, S A
Jonsell, S
Kurchaninov, L
Madsen, N
Mathers, M
Maxwell, D
McKenna, J T K
Menary, S
Michan, J M
Momose, T
Munich, J J
Nolan, P
Olchanski, K
Olin, A
Pusa, P
Rasmussen, C Ø
Robicheaux, F
Sacramento, R L
Sameed, M
Sarid, E
Silveira, D M
Stracka, S
Stutter, G
So, C
Tharp, T D
Thompson, J E
Thompson, R I
van der Werf, D P
Wurtele, J S
author_sort Ahmadi, M
collection CERN
description Antihydrogen, a positron bound to an antiproton, is the simplest anti-atom. Its structure and properties are expected to mirror those of the hydrogen atom. Prospects for precision comparisons of the two, as tests of fundamental symmetries, are driving a vibrant programme of research. In this regard, a limiting factor in most experiments is the availability of large numbers of cold ground state antihydrogen atoms. Here, we describe how an improved synthesis process results in a maximum rate of 10.5±0.6 atoms trapped and detected per cycle, corresponding to more than an order of magnitude improvement over previous work. Additionally, we demonstrate how detailed control of electron, positron and antiproton plasmas enables repeated formation and trapping of antihydrogen atoms, with the simultaneous retention of atoms produced in previous cycles. We report a record of 54 detected annihilation events from a single release of the trapped anti-atoms accumulated from five consecutive cycles.
id oai-inspirehep.net-1631712
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
record_format invenio
spelling oai-inspirehep.net-16317122021-05-04T07:19:30Zdoi:10.1038/s41467-017-00760-9http://cds.cern.ch/record/2307383engAhmadi, MAlves, B X RBaker, C JBertsche, WButler, ECapra, ACarruth, CCesar, C LCharlton, MCohen, SCollister, REriksson, SEvans, AEvetts, NFajans, JFriesen, TFujiwara, M CGill, D RGutierrez, AHangst, J SHardy, W NHayden, M EIsaac, C AIshida, AJohnson, M AJones, S AJonsell, SKurchaninov, LMadsen, NMathers, MMaxwell, DMcKenna, J T KMenary, SMichan, J MMomose, TMunich, J JNolan, POlchanski, KOlin, APusa, PRasmussen, C ØRobicheaux, FSacramento, R LSameed, MSarid, ESilveira, D MStracka, SStutter, GSo, CTharp, T DThompson, J EThompson, R Ivan der Werf, D PWurtele, J SAntihydrogen accumulation for fundamental symmetry testsPhysics in GeneralParticle Physics - ExperimentAntihydrogen, a positron bound to an antiproton, is the simplest anti-atom. Its structure and properties are expected to mirror those of the hydrogen atom. Prospects for precision comparisons of the two, as tests of fundamental symmetries, are driving a vibrant programme of research. In this regard, a limiting factor in most experiments is the availability of large numbers of cold ground state antihydrogen atoms. Here, we describe how an improved synthesis process results in a maximum rate of 10.5±0.6 atoms trapped and detected per cycle, corresponding to more than an order of magnitude improvement over previous work. Additionally, we demonstrate how detailed control of electron, positron and antiproton plasmas enables repeated formation and trapping of antihydrogen atoms, with the simultaneous retention of atoms produced in previous cycles. We report a record of 54 detected annihilation events from a single release of the trapped anti-atoms accumulated from five consecutive cycles.oai:inspirehep.net:16317122017
spellingShingle Physics in General
Particle Physics - Experiment
Ahmadi, M
Alves, B X R
Baker, C J
Bertsche, W
Butler, E
Capra, A
Carruth, C
Cesar, C L
Charlton, M
Cohen, S
Collister, R
Eriksson, S
Evans, A
Evetts, N
Fajans, J
Friesen, T
Fujiwara, M C
Gill, D R
Gutierrez, A
Hangst, J S
Hardy, W N
Hayden, M E
Isaac, C A
Ishida, A
Johnson, M A
Jones, S A
Jonsell, S
Kurchaninov, L
Madsen, N
Mathers, M
Maxwell, D
McKenna, J T K
Menary, S
Michan, J M
Momose, T
Munich, J J
Nolan, P
Olchanski, K
Olin, A
Pusa, P
Rasmussen, C Ø
Robicheaux, F
Sacramento, R L
Sameed, M
Sarid, E
Silveira, D M
Stracka, S
Stutter, G
So, C
Tharp, T D
Thompson, J E
Thompson, R I
van der Werf, D P
Wurtele, J S
Antihydrogen accumulation for fundamental symmetry tests
title Antihydrogen accumulation for fundamental symmetry tests
title_full Antihydrogen accumulation for fundamental symmetry tests
title_fullStr Antihydrogen accumulation for fundamental symmetry tests
title_full_unstemmed Antihydrogen accumulation for fundamental symmetry tests
title_short Antihydrogen accumulation for fundamental symmetry tests
title_sort antihydrogen accumulation for fundamental symmetry tests
topic Physics in General
Particle Physics - Experiment
url https://dx.doi.org/10.1038/s41467-017-00760-9
http://cds.cern.ch/record/2307383
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