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BASE—high-precision comparisons of the fundamental properties of protons and antiprotons

The BASE collaboration at the antiproton decelerator/ELENA facility of CERN compares the fundamental properties of protons and antiprotons with ultra-high precision. Using advanced Penning trap systems, we have measured the proton and antiproton magnetic moments with fractional uncertainties of 300 ...

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Autores principales: Latacz, B M, Arndt, B P, Bauer, B B, Devlin, J A, Erlewein, S R, Fleck, M, Jäger, J I, Schiffelholz, M, Umbrazunas, G, Wursten, E J, Abbass, F, Micke, P, Popper, D, Wiesinger, M, Will, C, Yildiz, H, Blaum, K, Matsuda, Y, Mooser, A, Ospelkaus, C, Quint, W, Soter, A, Walz, J, Yamazaki, Y, Smorra, C, Ulmer, S
Lenguaje:eng
Publicado: 2023
Materias:
Acceso en línea:https://dx.doi.org/10.1140/epjd/s10053-023-00672-y
http://cds.cern.ch/record/2861847
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author Latacz, B M
Arndt, B P
Bauer, B B
Devlin, J A
Erlewein, S R
Fleck, M
Jäger, J I
Schiffelholz, M
Umbrazunas, G
Wursten, E J
Abbass, F
Micke, P
Popper, D
Wiesinger, M
Will, C
Yildiz, H
Blaum, K
Matsuda, Y
Mooser, A
Ospelkaus, C
Quint, W
Soter, A
Walz, J
Yamazaki, Y
Smorra, C
Ulmer, S
author_facet Latacz, B M
Arndt, B P
Bauer, B B
Devlin, J A
Erlewein, S R
Fleck, M
Jäger, J I
Schiffelholz, M
Umbrazunas, G
Wursten, E J
Abbass, F
Micke, P
Popper, D
Wiesinger, M
Will, C
Yildiz, H
Blaum, K
Matsuda, Y
Mooser, A
Ospelkaus, C
Quint, W
Soter, A
Walz, J
Yamazaki, Y
Smorra, C
Ulmer, S
author_sort Latacz, B M
collection CERN
description The BASE collaboration at the antiproton decelerator/ELENA facility of CERN compares the fundamental properties of protons and antiprotons with ultra-high precision. Using advanced Penning trap systems, we have measured the proton and antiproton magnetic moments with fractional uncertainties of 300 parts in a trillion (p.p.t.) and 1.5 parts in a billion (p.p.b.), respectively. The combined measurements improve the resolution of the previous best test in that sector by more than a factor of 3000. Very recently, we have compared the antiproton/proton charge-to-mass ratios with a fractional precision of 16 p.p.t., which improved the previous best measurement by a factor of 4.3. These results allowed us also to perform a differential matter/antimatter clock comparison test to limits better than $3\,$%. Our measurements enable us to set limits on 22 coefficients of CPT- and Lorentz-violating standard model extensions (SME) and to search for potentially asymmetric interactions between antimatter and dark matter. In this article, we review some of the recent achievements and outline recent progress towards a planned improved measurement of the antiproton magnetic moment with an at least tenfold improved fractional accuracy.[graphic not available: see fulltext][graphic not available: see fulltext]
id cern-2861847
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2023
record_format invenio
spelling cern-28618472023-06-27T08:21:38Zdoi:10.1140/epjd/s10053-023-00672-yhttp://cds.cern.ch/record/2861847engLatacz, B MArndt, B PBauer, B BDevlin, J AErlewein, S RFleck, MJäger, J ISchiffelholz, MUmbrazunas, GWursten, E JAbbass, FMicke, PPopper, DWiesinger, MWill, CYildiz, HBlaum, KMatsuda, YMooser, AOspelkaus, CQuint, WSoter, AWalz, JYamazaki, YSmorra, CUlmer, SBASE—high-precision comparisons of the fundamental properties of protons and antiprotonsNuclear Physics - ExperimentNuclear Physics - TheoryThe BASE collaboration at the antiproton decelerator/ELENA facility of CERN compares the fundamental properties of protons and antiprotons with ultra-high precision. Using advanced Penning trap systems, we have measured the proton and antiproton magnetic moments with fractional uncertainties of 300 parts in a trillion (p.p.t.) and 1.5 parts in a billion (p.p.b.), respectively. The combined measurements improve the resolution of the previous best test in that sector by more than a factor of 3000. Very recently, we have compared the antiproton/proton charge-to-mass ratios with a fractional precision of 16 p.p.t., which improved the previous best measurement by a factor of 4.3. These results allowed us also to perform a differential matter/antimatter clock comparison test to limits better than $3\,$%. Our measurements enable us to set limits on 22 coefficients of CPT- and Lorentz-violating standard model extensions (SME) and to search for potentially asymmetric interactions between antimatter and dark matter. In this article, we review some of the recent achievements and outline recent progress towards a planned improved measurement of the antiproton magnetic moment with an at least tenfold improved fractional accuracy.[graphic not available: see fulltext][graphic not available: see fulltext]oai:cds.cern.ch:28618472023
spellingShingle Nuclear Physics - Experiment
Nuclear Physics - Theory
Latacz, B M
Arndt, B P
Bauer, B B
Devlin, J A
Erlewein, S R
Fleck, M
Jäger, J I
Schiffelholz, M
Umbrazunas, G
Wursten, E J
Abbass, F
Micke, P
Popper, D
Wiesinger, M
Will, C
Yildiz, H
Blaum, K
Matsuda, Y
Mooser, A
Ospelkaus, C
Quint, W
Soter, A
Walz, J
Yamazaki, Y
Smorra, C
Ulmer, S
BASE—high-precision comparisons of the fundamental properties of protons and antiprotons
title BASE—high-precision comparisons of the fundamental properties of protons and antiprotons
title_full BASE—high-precision comparisons of the fundamental properties of protons and antiprotons
title_fullStr BASE—high-precision comparisons of the fundamental properties of protons and antiprotons
title_full_unstemmed BASE—high-precision comparisons of the fundamental properties of protons and antiprotons
title_short BASE—high-precision comparisons of the fundamental properties of protons and antiprotons
title_sort base—high-precision comparisons of the fundamental properties of protons and antiprotons
topic Nuclear Physics - Experiment
Nuclear Physics - Theory
url https://dx.doi.org/10.1140/epjd/s10053-023-00672-y
http://cds.cern.ch/record/2861847
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