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As shown by Gertsenshtein in 1961, an external magnetic field can catalyze the mixing of graviton and photon states in a manner analogous to neutrino-flavor oscillations.
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1962
Earlier work this paper cites.
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2006
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S. Boughn and T. Rothman, “Aspects of Graviton Detection: Graviton Emission and Absorption by Atomic Hydrogen,”
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V. Anastassopoulos et al. “New CAST Limit on the Axion-Photon Interaction,”
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A. Palessandro and M. S. Sloth, “Gravitational Absorption Lines,” Phys. Rev. D
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A. Ringwald, J. Schütte-Engel and C. Tamarit, “Gravitational Waves as a Big Bang Thermometer,” JCAP
2021
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V. Domcke and C. Garcia-Cely, “Potential of radio telescopes as high-frequency gravitational wave detectors,” Phys. Rev. Lett
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N. Aggarwal, O. D. Aguiar, A. Bauswein, G. Cella, S. Clesse, A. M. Cruise, V. Domcke, D. G. Figueroa, A. Geraci and M. Goryachev,
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S. Vagnozzi and A. Loeb, “The Challenge of Ruling Out Inflation via the Primordial Graviton Background,” Astrophys. J. Lett
2022
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V. Domcke, C. Garcia-Cely and N. L. Rodd, “Novel Search for High-Frequency Gravitational Waves with Low-Mass Axion Haloscopes,” Phys. Rev. Lett
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A. Berlin, D. Blas, R. Tito D’Agnolo, S. A. R. Ellis, R. Harnik, Y. Kahn and J. Schütte-Engel, “Detecting high-frequency gravitational waves with microwave cavities,” Phys. Rev. D
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F. J. Dyson, “Photon-Graviton Oscillations” (unpublished)
Cited in the paper.
D. Ejlli, “Mixing of gravitons with photons in primordial magnetic fields,” arXiv:1307.7883
Cited in the paper.
P. Jones and D. Singleton, “Interaction Between Gravitational Radiation and Electromagnetic Radiation,”
Cited in the paper.
Cited in the paper.
Later among the works it cites.
C. Adair et al. “Search for Dark Matter Axions with CAST-CAPP,”
2022
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