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The next generation of axion direct detection experiments may rule out or confirm axions as the dominant source of dark matter.
R. H. Dicke, “The Measurement of Thermal Radiation at Microwave Frequencies,” Rev. Sci. Instrum. 17
1946
Earlier work this paper cites.
1953
Earlier work this paper cites.
Steven Weinberg, “A New Light Boson?” Phys.Rev.Lett. 40
1978
Earlier work this paper cites.
Frank Wilczek, “Problem of Strong P and T Invariance in the Presence of Instantons,” Phys.Rev.Lett. 40
1978
Earlier work this paper cites.
Jihn E. Kim, “Weak Interaction Singlet and Strong CP Invariance,” Phys. Rev. Lett. 43
1979
Earlier work this paper cites.
Mikhail A. Shifman, A. I. Vainshtein, and Valentin I. Zakharov, “Can Confinement Ensure Natural CP Invariance of Strong Interactions?” Nucl. Phys. B166
1980
Earlier work this paper cites.
A. R. Zhitnitsky, “On Possible Suppression of the Axion Hadron Interactions. (In Russian),” Sov. J. Nucl. Phys. 31
1980
Earlier work this paper cites.
Michael Dine, Willy Fischler, and Mark Srednicki, “A Simple Solution to the Strong CP Problem with a Harmless Axion,” Phys. Lett. B104
1981
Earlier work this paper cites.
John Preskill, Mark B. Wise, and Frank Wilczek, “Cosmology of the Invisible Axion,” Phys. Lett. B120
1983
Earlier work this paper cites.
L. F. Abbott and P. Sikivie, “A Cosmological Bound on the Invisible Axion,” Phys. Lett. B120
1983
Earlier work this paper cites.
Michael Dine and Willy Fischler, “The Not So Harmless Axion,” Phys. Lett. B120
1983
Earlier work this paper cites.
P. Sikivie, “Experimental Tests of the Invisible Axion,” 11th International Symposium on Lepton and Photon Interactions at High Energies Ithaca, New York, August 4-9, 1983 , Phys. Rev. Lett. 51
1984
Earlier work this paper cites.
HC Seton, DM Bussell, JMS Hutchison, and DJ Lurie, “Use of a DC SQUID receiver preamplifier in a low field MRI system,” Applied Superconductivity, IEEE Transactions on 5
1995
Earlier work this paper cites.
Jihn E. Kim, “Constraints on very light axions from cavity experiments,” Phys. Rev. D58
1998
Earlier work this paper cites.
Edward John Daw, A search for halo axions , Ph.D. thesis , MIT (1998)
1998
Earlier work this paper cites.
HC Seton, JMS Hutchison, and DM Bussell, “Gradiometer pick-up coil design for a low field SQUID-MRI system,” Magnetic Resonance Materials in Physics, Biology and Medicine 8
1999
Earlier work this paper cites.
H. Peng et al. , “Cryogenic cavity detector for a large scale cold dark-matter axion search,” Nucl. Instrum. Meth. A444
2000
Earlier work this paper cites.
Stephen J. Asztalos et al. (ADMX), “Large scale microwave cavity search for dark matter axions,” Phys. Rev. D64
2001
Earlier work this paper cites.
Stephen J. Asztalos et al. (ADMX), “Experimental constraints on the axion dark matter halo density,” Astrophys. J. 571
2002
Earlier work this paper cites.
Stephen J. Asztalos et al. (ADMX), “An Improved RF cavity search for halo axions,” Phys. Rev. D69
2004
Earlier work this paper cites.
Fu-Sin Ling, Pierre Sikivie, and Stuart Wick, “Diurnal and annual modulation of cold dark matter signals,” Phys. Rev. D70
2004
Earlier work this paper cites.
Katherine Freese, Paolo Gondolo, and Heidi Jo Newberg, “Detectability of weakly interacting massive particles in the Sagittarius dwarf tidal stream,” Phys. Rev. D71
2005
Earlier work this paper cites.
Christopher Savage, Katherine Freese, and Paolo Gondolo, “Annual Modulation of Dark Matter in the Presence of Streams,” Phys. Rev. D74
2006
Earlier work this paper cites.
Leanne D. Duffy, P. Sikivie, D. B. Tanner, Stephen J. Asztalos, C. Hagmann, D. Kinion, L. J Rosenberg, K. van Bibber, D. B. Yu, and R. F. Bradley (ADMX), “A high resolution search for dark-matter axions,” Phys. Rev. D74
2006
Earlier work this paper cites.
2008
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2008
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2009
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2009
Earlier work this paper cites.
T. Bruch, J. Read, L. Baudis, and G. Lake, “Detecting the Milky Way’s Dark Disk,” Astrophys. J. 696
2009
Earlier work this paper cites.
2009
Earlier work this paper cites.
C. W. Purcell, J. S. Bullock, and M. Kaplinghat, “The Dark Disk of the Milky Way,” ApJ 703
2009
Earlier work this paper cites.
S. J. Asztalos, G. Carosi, C. Hagmann, D. Kinion, K. van Bibber, M. Hotz, L. J Rosenberg, G. Rybka, J. Hoskins, J. Hwang, P. Sikivie, D. B. Tanner, R. Bradley, and J. Clarke, “SQUID-Based Microwave Cavity Search for Dark-Matter Axions,” Phys. Rev. Lett. 104
2010
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2011
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2012
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2016
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C. Patrignani et al. (Particle Data Group), “Review of Particle Physics,” Chin. Phys. C40
2016
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J. V. Sloan et al. , “Limits on axion–photon coupling or on local axion density: Dependence on models of the Milky Way’s dark halo,” Phys. Dark Univ. 14
2016
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2016
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2012
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2012
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2013
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2013
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2013
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2013
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Michael T. Hotz, A SQUID-Based RF Cavity Search for Dark Matter Axions , Ph.D. thesis , Washon U. (2013)
2013
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2016
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ChunJun Cao and Ariel Zhitnitsky, “Axion detection via Topological Casimir Effect,” Phys. Rev. D96
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Daniel Bowring (ADMX), “ADMX - the Axion Dark Matter eXperiment,” (2017), APS-DPF 2017
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ABRA 10cm Collaboration, “Sensitivity of ABRA-10cm to axion like particles,” (2017), to appear
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