Proposal for a Cosmic Axion Spin Precession Experiment (CASPEr)

We propose an experiment to search for QCD axion and axionlike-particle dark matter. Nuclei that are interacting with the background axion dark matter acquire time-varying CP-odd nuclear moments such as an electric dipole moment. In analogy with nuclear magnetic resonance, these moments cause preces...

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Main Authors: Dmitry Budker, Peter W. Graham, Micah Ledbetter, Surjeet Rajendran, Alexander O. Sushkov
Format: Article
Language:English
Published: American Physical Society 2014-05-01
Series:Physical Review X
Online Access:http://doi.org/10.1103/PhysRevX.4.021030
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spelling doaj-85183666821a402082a3671b99a155e42020-11-25T00:02:29ZengAmerican Physical SocietyPhysical Review X2160-33082014-05-014202103010.1103/PhysRevX.4.021030Proposal for a Cosmic Axion Spin Precession Experiment (CASPEr)Dmitry BudkerPeter W. GrahamMicah LedbetterSurjeet RajendranAlexander O. SushkovWe propose an experiment to search for QCD axion and axionlike-particle dark matter. Nuclei that are interacting with the background axion dark matter acquire time-varying CP-odd nuclear moments such as an electric dipole moment. In analogy with nuclear magnetic resonance, these moments cause precession of nuclear spins in a material sample in the presence of an electric field. Precision magnetometry can be used to search for such precession. An initial phase of this experiment could cover many orders of magnitude in axionlike-particle parameter space beyond the current astrophysical and laboratory limits. And with established techniques, the proposed experimental scheme has sensitivity to QCD axion masses m_{a}≲10^{-9}  eV, corresponding to theoretically well-motivated axion decay constants f_{a}≳10^{16}  GeV. With further improvements, this experiment could ultimately cover the entire range of masses m_{a}≲μ  eV, complementary to cavity searches.http://doi.org/10.1103/PhysRevX.4.021030
collection DOAJ
language English
format Article
sources DOAJ
author Dmitry Budker
Peter W. Graham
Micah Ledbetter
Surjeet Rajendran
Alexander O. Sushkov
spellingShingle Dmitry Budker
Peter W. Graham
Micah Ledbetter
Surjeet Rajendran
Alexander O. Sushkov
Proposal for a Cosmic Axion Spin Precession Experiment (CASPEr)
Physical Review X
author_facet Dmitry Budker
Peter W. Graham
Micah Ledbetter
Surjeet Rajendran
Alexander O. Sushkov
author_sort Dmitry Budker
title Proposal for a Cosmic Axion Spin Precession Experiment (CASPEr)
title_short Proposal for a Cosmic Axion Spin Precession Experiment (CASPEr)
title_full Proposal for a Cosmic Axion Spin Precession Experiment (CASPEr)
title_fullStr Proposal for a Cosmic Axion Spin Precession Experiment (CASPEr)
title_full_unstemmed Proposal for a Cosmic Axion Spin Precession Experiment (CASPEr)
title_sort proposal for a cosmic axion spin precession experiment (casper)
publisher American Physical Society
series Physical Review X
issn 2160-3308
publishDate 2014-05-01
description We propose an experiment to search for QCD axion and axionlike-particle dark matter. Nuclei that are interacting with the background axion dark matter acquire time-varying CP-odd nuclear moments such as an electric dipole moment. In analogy with nuclear magnetic resonance, these moments cause precession of nuclear spins in a material sample in the presence of an electric field. Precision magnetometry can be used to search for such precession. An initial phase of this experiment could cover many orders of magnitude in axionlike-particle parameter space beyond the current astrophysical and laboratory limits. And with established techniques, the proposed experimental scheme has sensitivity to QCD axion masses m_{a}≲10^{-9}  eV, corresponding to theoretically well-motivated axion decay constants f_{a}≳10^{16}  GeV. With further improvements, this experiment could ultimately cover the entire range of masses m_{a}≲μ  eV, complementary to cavity searches.
url http://doi.org/10.1103/PhysRevX.4.021030
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