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Dark matter may induce apparent temporal variations in the physical "constants", including the electromagnetic fine-structure constant and fermion masses.
1902
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1902
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1902
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1905
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H.-K. Guo, K. Riles, F.-W. Yang and Y. Zhao, Searching for Dark Photon Dark Matter in LIGO O1 Data
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A. Derevianko and M. Pospelov, Hunting for topological dark matter with atomic clocks
2014
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Y. V. Stadnik and V. V. Flambaum, Searching for Topological Defect Dark Matter via Nongravitational Signatures
2014
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Y. V. Stadnik and V. V. Flambaum, Searching for Dark Matter and Variation of Fundamental Constants with Laser and Maser Interferometry
2015
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Y. V. Stadnik and V. V. Flambaum, Can Dark Matter Induce Cosmological Evolution of the Fundamental Constants of Nature?
2015
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2015
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A. Arvanitaki, J. Huang, and K. Van Tilburg, Searching for dilaton dark matter with atomic clocks
2015
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Y. V. Stadnik and V. V. Flambaum, Enhanced effects of variation of the fundamental constants in laser interferometers and application to dark-matter detection
2016
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P. Wcislo, P. Morzynski, M. Bober, A. Cygan, D. Lisak, R. Ciurylo and M. Zawada, Experimental constraint on dark matter detection with optical atomic clocks
2016
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2016
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2016
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2018
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2018
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2018
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2018
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J. Berge, P. Brax, G. Metris, M. Pernot-Borras, P. Touboul and J.-P. Uzan, MICROSCOPE Mission: First Constraints on the Violation of the Weak Equivalence Principle by a Light Scalar Dilaton
2018
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A. Pierce, K. Riles and Y. Zhao, Searching for Dark Photon Dark Matter with Gravitational-Wave Detectors
2018
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2018
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L. F. Pasteka, Y. Hao, A. Borschevsky, V. V. Flambaum and P. Schwerdtfeger, Material Size Dependence on Fundamental Constants
2019
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