Search for Spin-Dependent Short-Range Interaction with an 3 He/129Xe Clock Comparison Experiment

We performed an experiment to search for a new spin-dependent P- and T-violating nucleon–nucleon interaction [Formula: see text] which is mediated by light pseudoscalar bosons such as axions or axionlike particles. This interaction causes a shift [Formula: see text] in the precession frequency of nu...

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Veröffentlicht in:International journal of modern physics. Conference series 2016-01, Vol.40, p.1660083
Hauptverfasser: Tullney, Kathlynne, Heil, Werner, Karpuk, Sergei, Sobolev, Yuri, Allmendinger, Fabian, Schmidt, Ulrich
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container_start_page 1660083
container_title International journal of modern physics. Conference series
container_volume 40
creator Tullney, Kathlynne
Heil, Werner
Karpuk, Sergei
Sobolev, Yuri
Allmendinger, Fabian
Schmidt, Ulrich
description We performed an experiment to search for a new spin-dependent P- and T-violating nucleon–nucleon interaction [Formula: see text] which is mediated by light pseudoscalar bosons such as axions or axionlike particles. This interaction causes a shift [Formula: see text] in the precession frequency of nuclear spin polarized gases in the presence of an unpolarized mass. In order to measure this frequency shift a 3 He/[Formula: see text]Xe comagnetometer was used which is based on the detection of free precession of 3 He and [Formula: see text]Xe nuclear spins using SQUIDs as detectors. For the upper limit of [Formula: see text] we obtained 7.1[Formula: see text]nHz. With this value, an upper limit of the scalar-pseudoscalar coupling of the axion to the spin of a bound neutron could be deduced within the axion mass window. For axion masses between 2 and 500[Formula: see text][Formula: see text]eV, the laboratory upper bounds were improved by up to 4 orders of magnitude.
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