Observation of antihydrogen production in flight at CERN
Abstract The observation of the production of antihydrogen atoms \overlineH 0\equiv\barpe+, the simplest atomic bound state of antimatter, is presented. A method has been used by the PS210 collaboration at LEAR which assumes that the production of \overlineH0 is predominantly mediated by the e+e--pa...
Ausführliche Beschreibung
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1997 |
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13 |
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Springer Online Journal Archives 1860-2002 |
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in: Hyperfine interactions - 1975, 109(1997) vom: Jan./Apr., Seite 191-203 |
Übergeordnetes Werk: |
volume:109 ; year:1997 ; month:01/04 ; pages:191-203 ; extent:13 |
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520 | |a Abstract The observation of the production of antihydrogen atoms \overlineH 0\equiv\barpe+, the simplest atomic bound state of antimatter, is presented. A method has been used by the PS210 collaboration at LEAR which assumes that the production of \overlineH0 is predominantly mediated by the e+e--pair creation via the two-photon mechanism in the antiproton--nucleus interaction. Neutral \overlineH0 atoms are indentified by a unique sequence of characteristics. In principle \overlineH0 is well suited for investigations of fundamental CPT violation studies under different forces, however, in our investigations we concentrate on the production of this antimatter object, since so far it had not been observed. The production of eleven antihydrogen atoms is reported including possibly 2± 1 background signals, the observed yield agrees with theoretical predictions. | ||
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700 | 1 | |a Stinzing, F. |4 oth | |
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(DE-627)NLEJ194322882 DE-627 ger DE-627 rakwb eng Observation of antihydrogen production in flight at CERN 1997 13 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier Abstract The observation of the production of antihydrogen atoms \overlineH 0\equiv\barpe+, the simplest atomic bound state of antimatter, is presented. A method has been used by the PS210 collaboration at LEAR which assumes that the production of \overlineH0 is predominantly mediated by the e+e--pair creation via the two-photon mechanism in the antiproton--nucleus interaction. Neutral \overlineH0 atoms are indentified by a unique sequence of characteristics. In principle \overlineH0 is well suited for investigations of fundamental CPT violation studies under different forces, however, in our investigations we concentrate on the production of this antimatter object, since so far it had not been observed. The production of eleven antihydrogen atoms is reported including possibly 2± 1 background signals, the observed yield agrees with theoretical predictions. Springer Online Journal Archives 1860-2002 Baur, G. oth Boero, G. oth Brauksiepe, S. oth Buzzo, A. oth Eyrich, W. oth Geyer, R. oth Grzonka, D. oth Hauffe, J. oth Kilian, K. oth LoVetere, M. oth Macri, M. oth Moosburger, M. oth Nellen, R. oth Oelert, W. oth Passaggio, S. oth Pozzo, A. oth Röhrich, K. oth Sachs, K. oth Schepers, G. oth Sefzick, T. oth Simon, R.S. oth Stratmann, R. oth Stinzing, F. oth Wolke, M. oth in Hyperfine interactions 1975 109(1997) vom: Jan./Apr., Seite 191-203 (DE-627)NLEJ188985573 (DE-600)2021614-2 1572-9540 nnns volume:109 year:1997 month:01/04 pages:191-203 extent:13 http://dx.doi.org/10.1023/A:1012609601849 GBV_USEFLAG_U ZDB-1-SOJ GBV_NL_ARTICLE AR 109 1997 1/4 191-203 13 |
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(DE-627)NLEJ194322882 DE-627 ger DE-627 rakwb eng Observation of antihydrogen production in flight at CERN 1997 13 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier Abstract The observation of the production of antihydrogen atoms \overlineH 0\equiv\barpe+, the simplest atomic bound state of antimatter, is presented. A method has been used by the PS210 collaboration at LEAR which assumes that the production of \overlineH0 is predominantly mediated by the e+e--pair creation via the two-photon mechanism in the antiproton--nucleus interaction. Neutral \overlineH0 atoms are indentified by a unique sequence of characteristics. In principle \overlineH0 is well suited for investigations of fundamental CPT violation studies under different forces, however, in our investigations we concentrate on the production of this antimatter object, since so far it had not been observed. The production of eleven antihydrogen atoms is reported including possibly 2± 1 background signals, the observed yield agrees with theoretical predictions. Springer Online Journal Archives 1860-2002 Baur, G. oth Boero, G. oth Brauksiepe, S. oth Buzzo, A. oth Eyrich, W. oth Geyer, R. oth Grzonka, D. oth Hauffe, J. oth Kilian, K. oth LoVetere, M. oth Macri, M. oth Moosburger, M. oth Nellen, R. oth Oelert, W. oth Passaggio, S. oth Pozzo, A. oth Röhrich, K. oth Sachs, K. oth Schepers, G. oth Sefzick, T. oth Simon, R.S. oth Stratmann, R. oth Stinzing, F. oth Wolke, M. oth in Hyperfine interactions 1975 109(1997) vom: Jan./Apr., Seite 191-203 (DE-627)NLEJ188985573 (DE-600)2021614-2 1572-9540 nnns volume:109 year:1997 month:01/04 pages:191-203 extent:13 http://dx.doi.org/10.1023/A:1012609601849 GBV_USEFLAG_U ZDB-1-SOJ GBV_NL_ARTICLE AR 109 1997 1/4 191-203 13 |
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(DE-627)NLEJ194322882 DE-627 ger DE-627 rakwb eng Observation of antihydrogen production in flight at CERN 1997 13 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier Abstract The observation of the production of antihydrogen atoms \overlineH 0\equiv\barpe+, the simplest atomic bound state of antimatter, is presented. A method has been used by the PS210 collaboration at LEAR which assumes that the production of \overlineH0 is predominantly mediated by the e+e--pair creation via the two-photon mechanism in the antiproton--nucleus interaction. Neutral \overlineH0 atoms are indentified by a unique sequence of characteristics. In principle \overlineH0 is well suited for investigations of fundamental CPT violation studies under different forces, however, in our investigations we concentrate on the production of this antimatter object, since so far it had not been observed. The production of eleven antihydrogen atoms is reported including possibly 2± 1 background signals, the observed yield agrees with theoretical predictions. Springer Online Journal Archives 1860-2002 Baur, G. oth Boero, G. oth Brauksiepe, S. oth Buzzo, A. oth Eyrich, W. oth Geyer, R. oth Grzonka, D. oth Hauffe, J. oth Kilian, K. oth LoVetere, M. oth Macri, M. oth Moosburger, M. oth Nellen, R. oth Oelert, W. oth Passaggio, S. oth Pozzo, A. oth Röhrich, K. oth Sachs, K. oth Schepers, G. oth Sefzick, T. oth Simon, R.S. oth Stratmann, R. oth Stinzing, F. oth Wolke, M. oth in Hyperfine interactions 1975 109(1997) vom: Jan./Apr., Seite 191-203 (DE-627)NLEJ188985573 (DE-600)2021614-2 1572-9540 nnns volume:109 year:1997 month:01/04 pages:191-203 extent:13 http://dx.doi.org/10.1023/A:1012609601849 GBV_USEFLAG_U ZDB-1-SOJ GBV_NL_ARTICLE AR 109 1997 1/4 191-203 13 |
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(DE-627)NLEJ194322882 DE-627 ger DE-627 rakwb eng Observation of antihydrogen production in flight at CERN 1997 13 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier Abstract The observation of the production of antihydrogen atoms \overlineH 0\equiv\barpe+, the simplest atomic bound state of antimatter, is presented. A method has been used by the PS210 collaboration at LEAR which assumes that the production of \overlineH0 is predominantly mediated by the e+e--pair creation via the two-photon mechanism in the antiproton--nucleus interaction. Neutral \overlineH0 atoms are indentified by a unique sequence of characteristics. In principle \overlineH0 is well suited for investigations of fundamental CPT violation studies under different forces, however, in our investigations we concentrate on the production of this antimatter object, since so far it had not been observed. The production of eleven antihydrogen atoms is reported including possibly 2± 1 background signals, the observed yield agrees with theoretical predictions. Springer Online Journal Archives 1860-2002 Baur, G. oth Boero, G. oth Brauksiepe, S. oth Buzzo, A. oth Eyrich, W. oth Geyer, R. oth Grzonka, D. oth Hauffe, J. oth Kilian, K. oth LoVetere, M. oth Macri, M. oth Moosburger, M. oth Nellen, R. oth Oelert, W. oth Passaggio, S. oth Pozzo, A. oth Röhrich, K. oth Sachs, K. oth Schepers, G. oth Sefzick, T. oth Simon, R.S. oth Stratmann, R. oth Stinzing, F. oth Wolke, M. oth in Hyperfine interactions 1975 109(1997) vom: Jan./Apr., Seite 191-203 (DE-627)NLEJ188985573 (DE-600)2021614-2 1572-9540 nnns volume:109 year:1997 month:01/04 pages:191-203 extent:13 http://dx.doi.org/10.1023/A:1012609601849 GBV_USEFLAG_U ZDB-1-SOJ GBV_NL_ARTICLE AR 109 1997 1/4 191-203 13 |
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(DE-627)NLEJ194322882 DE-627 ger DE-627 rakwb eng Observation of antihydrogen production in flight at CERN 1997 13 nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier Abstract The observation of the production of antihydrogen atoms \overlineH 0\equiv\barpe+, the simplest atomic bound state of antimatter, is presented. A method has been used by the PS210 collaboration at LEAR which assumes that the production of \overlineH0 is predominantly mediated by the e+e--pair creation via the two-photon mechanism in the antiproton--nucleus interaction. Neutral \overlineH0 atoms are indentified by a unique sequence of characteristics. In principle \overlineH0 is well suited for investigations of fundamental CPT violation studies under different forces, however, in our investigations we concentrate on the production of this antimatter object, since so far it had not been observed. The production of eleven antihydrogen atoms is reported including possibly 2± 1 background signals, the observed yield agrees with theoretical predictions. Springer Online Journal Archives 1860-2002 Baur, G. oth Boero, G. oth Brauksiepe, S. oth Buzzo, A. oth Eyrich, W. oth Geyer, R. oth Grzonka, D. oth Hauffe, J. oth Kilian, K. oth LoVetere, M. oth Macri, M. oth Moosburger, M. oth Nellen, R. oth Oelert, W. oth Passaggio, S. oth Pozzo, A. oth Röhrich, K. oth Sachs, K. oth Schepers, G. oth Sefzick, T. oth Simon, R.S. oth Stratmann, R. oth Stinzing, F. oth Wolke, M. oth in Hyperfine interactions 1975 109(1997) vom: Jan./Apr., Seite 191-203 (DE-627)NLEJ188985573 (DE-600)2021614-2 1572-9540 nnns volume:109 year:1997 month:01/04 pages:191-203 extent:13 http://dx.doi.org/10.1023/A:1012609601849 GBV_USEFLAG_U ZDB-1-SOJ GBV_NL_ARTICLE AR 109 1997 1/4 191-203 13 |
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Baur, G. @@oth@@ Boero, G. @@oth@@ Brauksiepe, S. @@oth@@ Buzzo, A. @@oth@@ Eyrich, W. @@oth@@ Geyer, R. @@oth@@ Grzonka, D. @@oth@@ Hauffe, J. @@oth@@ Kilian, K. @@oth@@ LoVetere, M. @@oth@@ Macri, M. @@oth@@ Moosburger, M. @@oth@@ Nellen, R. @@oth@@ Oelert, W. @@oth@@ Passaggio, S. @@oth@@ Pozzo, A. @@oth@@ Röhrich, K. @@oth@@ Sachs, K. @@oth@@ Schepers, G. @@oth@@ Sefzick, T. @@oth@@ Simon, R.S. @@oth@@ Stratmann, R. @@oth@@ Stinzing, F. @@oth@@ Wolke, M. @@oth@@ |
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Abstract The observation of the production of antihydrogen atoms \overlineH 0\equiv\barpe+, the simplest atomic bound state of antimatter, is presented. A method has been used by the PS210 collaboration at LEAR which assumes that the production of \overlineH0 is predominantly mediated by the e+e--pair creation via the two-photon mechanism in the antiproton--nucleus interaction. Neutral \overlineH0 atoms are indentified by a unique sequence of characteristics. In principle \overlineH0 is well suited for investigations of fundamental CPT violation studies under different forces, however, in our investigations we concentrate on the production of this antimatter object, since so far it had not been observed. The production of eleven antihydrogen atoms is reported including possibly 2± 1 background signals, the observed yield agrees with theoretical predictions. |
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Abstract The observation of the production of antihydrogen atoms \overlineH 0\equiv\barpe+, the simplest atomic bound state of antimatter, is presented. A method has been used by the PS210 collaboration at LEAR which assumes that the production of \overlineH0 is predominantly mediated by the e+e--pair creation via the two-photon mechanism in the antiproton--nucleus interaction. Neutral \overlineH0 atoms are indentified by a unique sequence of characteristics. In principle \overlineH0 is well suited for investigations of fundamental CPT violation studies under different forces, however, in our investigations we concentrate on the production of this antimatter object, since so far it had not been observed. The production of eleven antihydrogen atoms is reported including possibly 2± 1 background signals, the observed yield agrees with theoretical predictions. |
abstract_unstemmed |
Abstract The observation of the production of antihydrogen atoms \overlineH 0\equiv\barpe+, the simplest atomic bound state of antimatter, is presented. A method has been used by the PS210 collaboration at LEAR which assumes that the production of \overlineH0 is predominantly mediated by the e+e--pair creation via the two-photon mechanism in the antiproton--nucleus interaction. Neutral \overlineH0 atoms are indentified by a unique sequence of characteristics. In principle \overlineH0 is well suited for investigations of fundamental CPT violation studies under different forces, however, in our investigations we concentrate on the production of this antimatter object, since so far it had not been observed. The production of eleven antihydrogen atoms is reported including possibly 2± 1 background signals, the observed yield agrees with theoretical predictions. |
collection_details |
GBV_USEFLAG_U ZDB-1-SOJ GBV_NL_ARTICLE |
title_short |
Observation of antihydrogen production in flight at CERN |
url |
http://dx.doi.org/10.1023/A:1012609601849 |
remote_bool |
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author2 |
Baur, G. Boero, G. Brauksiepe, S. Buzzo, A. Eyrich, W. Geyer, R. Grzonka, D. Hauffe, J. Kilian, K. LoVetere, M. Macri, M. Moosburger, M. Nellen, R. Oelert, W. Passaggio, S. Pozzo, A. Röhrich, K. Sachs, K. Schepers, G. Sefzick, T. Simon, R.S. Stratmann, R. Stinzing, F. Wolke, M. |
author2Str |
Baur, G. Boero, G. Brauksiepe, S. Buzzo, A. Eyrich, W. Geyer, R. Grzonka, D. Hauffe, J. Kilian, K. LoVetere, M. Macri, M. Moosburger, M. Nellen, R. Oelert, W. Passaggio, S. Pozzo, A. Röhrich, K. Sachs, K. Schepers, G. Sefzick, T. Simon, R.S. Stratmann, R. Stinzing, F. Wolke, M. |
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up_date |
2024-07-06T00:24:14.748Z |
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