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We generalise existing constraints on primordial black holes to dark objects with extended sizes using the aLIGO design sensitivity.
1901
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1904
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1904
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1904
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V. Vaskonen and H. Veermäe, Lower bound on the primordial black hole merger rate , Phys. Rev. D 101
1908
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D. Lai and A.G. Wiseman, Innermost stable circular orbit of inspiraling neutron star binaries: Tidal effects, postNewtonian effects and the neutron star equation of state , Phys. Rev. D 54
1996
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T. Nakamura, M. Sasaki, T. Tanaka and K.S. Thorne, Gravitational waves from coalescing black hole MACHO binaries , Astrophys. J. Lett. 487
1997
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C. Alcock, R.A. Allsman, D. Alves, R. Ansari, É. Aubourg, T.S. Axelrod et al., EROS and MACHO combined limits on planetary-mass dark matter in the galactic halo , The Astrophysical Journal 499
1998
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A. Jenkins, C.S. Frenk, S.D.M. White, J.M. Colberg, S. Cole, A.E. Evrard et al., The Mass function of dark matter halos , Mon. Not. Roy. Astron. Soc. 321
2001
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2002
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H. Mouri and Y. Taniguchi, Runaway merging of black holes: analytical constraint on the timescale , Astrophys. J. Lett. 566
2002
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E.E. Flanagan and S.A. Hughes, The Basics of gravitational wave theory , New J. Phys. 7
2005
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K. Jedamzik, Primordial Black Hole Dark Matter and the LIGO/Virgo observations , JCAP 09
2006
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A.M. Green and B.J. Kavanagh, Primordial Black Holes as a dark matter candidate , J. Phys. G 48
2007
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2007
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M. Maggiore, Gravitational Waves. Vol. 1: Theory and Experiments , Oxford Master Series in Physics, Oxford University Press (2007)
2007
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2010
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2010
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H.S. Chia, Tidal deformation and dissipation of rotating black holes , Phys. Rev. D 104
2017
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2017
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2018
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2018
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2010
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2011
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G. Hütsi, M. Raidal, V. Vaskonen and H. Veermäe, Two populations of LIGO-Virgo black holes , JCAP 03
2012
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2012
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2016
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2016
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2016
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2017
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2018
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2019
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2019
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A. Nelson, S. Reddy and D. Zhou, Dark halos around neutron stars and gravitational waves , JCAP 1907
2019
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V.D. Stasenko and A.A. Kirillov, The merger rate of black holes in a primordial black hole cluster , Physics 3
2021
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2021
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2021
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2021
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2022
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