Abstract
Optical magnetometers based on electromagnetically induced transparency
(EIT) in atomic vapor can in principle achieve outstanding sensitivity
and accuracy in a small volume. Up until now, however, the predicted
fundamental quantum-noise-limited sensitivity has not been achieved in
practice due to various technical limitations associated with the
measurement apparatus. Here we analyze these restrictions and propose
viable mitigation strategies for performance optimization. As an
example, we show that an EIT magnetometer can theoretically achieve
sensitivity better than 100 fT at 1 s measurement time
under realistic conditions.
Funder
National Aeronautics and Space
Administration
Defense Advanced Research Projects
Agency
Army Research Office
Subject
Atomic and Molecular Physics, and Optics,Engineering (miscellaneous),Electrical and Electronic Engineering
Cited by
2 articles.
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