DOE OSTI · 2481372
Statistics and sensitivity of axion wind detection with the homogeneous precession domain of superfluid helium-3
Abstract
The homogeneous precession domain (HPD) of superfluid He 3 has recently been identified as a detection medium which might provide sensitivity to the axion-nucleon coupling g a N N competitive with, or surpassing, existing experimental proposals. In this work, we make a detailed study of the statistical and dynamical properties of the HPD system in order to make realistic projections for a full-fledged experimental program. We include the effects of clock error and measurement error in a concrete readout scheme using superconducting qubits and quantum metrology. This work also provides a more general framework to describe the statistics associated with the axion gradient coupling through the treatment of a transient resonance with a nonstationary background in a time-series analysis. Incorporating an optimal data-taking and analysis strategy, we project a sensitivity approaching g a N N ∼ 10 − 12 GeV − 1 across a decade in axion mass. Published by the American Physical Society 2024
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Foster, Joshua W. (ORCID:0000000273992608), Gao, Christina (ORCID:0000000285993966), Halperin, William (ORCID:0000000334115327), Kahn, Yonatan (ORCID:0000000293791838), Mande, Aarav (ORCID:0009000684756842), Nguyen, Man (ORCID:0000000194146083), Schütte-Engel, Jan (ORCID:000000017905237X), Scott, John William (ORCID:0000000156410293). 2024-12-13. Statistics and sensitivity of axion wind detection with the homogeneous precession domain of superfluid helium-3. https://doi.org/10.1103/physrevd.110.115020
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