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Physics > Atomic Physics

arXiv:2309.16255 (physics)
[Submitted on 28 Sep 2023 (v1), last revised 23 Oct 2024 (this version, v2)]

Title:Remote Detection Optical Magnetometry

Authors:Alexander M. Akulshin, Dmitry Budker, Felipe Pedreros Bustos, Tong Dang, Emmanuel Klinger, Simon M. Rochester, Arne Wickenbrock, Rui Zhang
View a PDF of the paper titled Remote Detection Optical Magnetometry, by Alexander M. Akulshin and 7 other authors
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Abstract:Sensitive magnetometers have been applied in a wide range of research fields, including geophysical exploration, bio-magnetic field detection, ultralow-field nuclear magnetic resonance, etc. Commonly, magnetometers are directly placed at the position where the magnetic field is to be measured. However, in some situations, for example in near space or harsh environments, near nuclear reactors or particle accelerators, it is hard to place a magnetometer directly there. If the magnetic field can be detected remotely, i.e., via stand-off detection, this problem can be solved. As optical magnetometers are based on optical readout, they are naturally promising for stand-off detection. We review various approaches to optical stand-off magnetometry proposed and developed over the years, culminating in recent results on measuring magnetic fields in the mesosphere using laser guide stars, magnetometry with mirrorless-lasing readout, and proposals for satellite-assisted interrogation of atmospheric sodium.
Subjects: Atomic Physics (physics.atom-ph)
Cite as: arXiv:2309.16255 [physics.atom-ph]
  (or arXiv:2309.16255v2 [physics.atom-ph] for this version)
  https://doi.org/10.48550/arXiv.2309.16255
arXiv-issued DOI via DataCite

Submission history

From: Emmanuel Klinger [view email]
[v1] Thu, 28 Sep 2023 08:47:31 UTC (6,375 KB)
[v2] Wed, 23 Oct 2024 09:32:02 UTC (5,964 KB)
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