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Searches for dark matter (DM) constituents are presently mainly focused on axions and WIMPs despite the fact that far higher mass constituents are viable.
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1992
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S.M. Barr and D. Seckel, Planck Scale Corrections to Axion Models
1992
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U. Amaldi, W. De Boer, P.H. Frampton, H. Furstenau and J.T. Liu, Consistency Checks of Grand Unified Theories
1992
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P.H. Frampton, Chiral Dilepton Model and the Flavor Question
1992
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J.F. Donoghue, General Relativity as an Effective Field Theory: The Leading Quantum Corrections
1994
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G.H. Xu and J.P. Ostriker, Dynamics of Massive Black Holes as a Possible Candidate of Galactic Dark Matter
1994
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D.J. Fixsen, E.S. Cheng, J.M. Gales, J.C. Mather, R.A. Shafer and E.L. Wright, The Cosmic Microwave Background Spectrum from the Full COBE FIRAS Data Set
1996
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P.H. Frampton, Looking for Intermediate-Mass Black Holes
2010
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P.H. Frampton, Black Holes as Dark Matter
2010
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M. Begelman and M. Rees, Gravity’s Fatal Attraction: Black Holes in the Universe
2010
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2010
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P.H. Frampton and K.J. Ludwick, Number and Entropy of Halo Black Holes
2011
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2011
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G. Bertone (Editor), Particle Dark Matter, Observations, Models and Searches
2013
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R.H. Sanders, The Dark Matter Problem, A Historical Perspective
2014
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2014
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2014
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2014
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Planck Collaboration. Planck 2015 Results. XIII. Cosmological Parameters
2015
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2015
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2015
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P.H. Frampton, Lepton Number Conservation, Long-Lived Quarks and Superweak Bileptonic Decays
2015
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P.H. Frampton, The Primordial Black Hole Mass Range
2016
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