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The Cosmic Axion Spin Precession Experiment (CASPEr) seeks to measure oscillating torques on nuclear spins caused by axion or axion-like-particle (ALP) dark matter via nuclear magnetic resonance (NMR) techniques.
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D. Budker, P. W. Graham, M. Ledbetter, S. Rajendran, A. O. Sushkov, Proposal for a cosmic axion spin precession experiment (CASPEr), Physical Review X 4 (2) (2014) 021030
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P.-H. Chu, Y. Kim, I. Savukov, Search for exotic spin-dependent interactions with a spin-exchange relaxation-free magnetometer, Physical Review D 94 (3) (2016) 036002
2016
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G. Ruoso, A. Lombardi, A. Ortolan, R. Pengo, C. Braggio, G. Carugno, C. S. Gallo, C. C. Speake, The QUAX proposal: a search of galactic axion with magnetic materials, Journal of Physics: Conference Series 718 (4) (2016) 042051
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Y. Kahn, B. R. Safdi, J. Thaler, Broadband and resonant approaches to axion dark matter detection, Physical Review Letter 117 (2016) 141801
2016
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D. F. J. Kimball, A. O. Sushkov, D. Budker, Precessing ferromagnetic needle magnetometer, Physical Review Letters 116 (19) (2016) 190801
2016
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J.-H. Storm, P. Hömmen, D. Drung, R. Körber, An ultra-sensitive and wideband magnetometer based on a superconducting quantum interference device, Applied Physics Letters 110 (7) (2017) 072603
2017
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