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astro-ph/0201260
R. Narayan, Why Do AGN Lighthouses Switch Off? , in Lighthouses of the Universe: The Most Luminous Celestial Objects and Their Use for Cosmology (M. Gilfanov, R. Sunyeav and E. Churazov, eds.), p. 405, Jan., 2002 · 2002
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2002
Cited alongside, same era.
2015
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2015
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2015
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2015
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M. R. S. Hawkins, A new look at microlensing limits on dark matter in the Galactic halo , A&A 575
2015
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J. S. Dillon, A. R. Neben, J. N. Hewitt, M. Tegmark, N. Barry, A. P. Beardsley et al., Empirical covariance modeling for 21 cm power spectrum estimation: A method demonstration and new limits from early murchison widefield array 128-tile data , Phys. Rev. D 91
2015
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D. C. Jacobs et al., Multi-redshift limits on the 21cm power spectrum from PAPER , Astrophys. J. 801
2015
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2015
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A. A. Kaurov and N. Y. Gnedin, Cosmic reionization on computers. iii. the clumping factor , The Astrophysical Journal 810
2015
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2015
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2015
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2015
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2015
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2015
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LIGO Scientific Collaboration and Virgo Collaboration
2016
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D. J. E. Marsh, Axion cosmology , Phys. Rep. 643
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J. A. Schewtschenko, Cosmological Simulations with Dark Matter from beyond the Standard Model · 2016
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N. Vinyoles and H. Vogel, Minicharged Particles from the Sun: A Cutting-Edge Bound , JCAP 1603
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B. Carr, F. Kühnel and M. Sandstad, Primordial black holes as dark matter , Phys. Rev. D 94
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2016
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J. B. Muñoz, E. D. Kovetz, L. Dai and M. Kamionkowski, Lensing of fast radio bursts as a probe of compact dark matter , Phys. Rev. Lett. 117
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J. Pober, 21cmSense: Calculating the sensitivity of 21cm experiments to the EoR power spectrum , Sept., 2016
2016
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2016
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L. B. Newburgh, K. Bandura, M. A. Bucher, T. C. Chang, H. C. Chiang, J. F. Cliche et al., HIRAX: a probe of dark energy and radio transients , in Ground-based and Airborne Telescopes VI (H. J. Hall, R. Gilmozzi and H. K. Marshall, eds.), vol. 9906 of Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series , p. 99065X, Aug., 2016 · 2016
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N. Y. Gnedin, Modeling Physical Processes at Galactic Scales and Above , Saas-Fee Advanced Course 43
2016
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P. A. Oesch, G. Brammer, P. G. v. Dokkum, G. D. Illingworth, R. J. Bouwens, I. Labbé et al., A remarkably luminous galaxy atz= 11.1 measured withhubble space telescopegrism spectroscopy , The Astrophysical Journal 819
2016
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A. A. Kaurov, On improving analytical models of cosmic reionization for matching numerical simulation , The Astrophysical Journal 831
2016
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2016
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2016
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2017
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J. G. de Swart, G. Bertone and J. van Dongen, How dark matter came to matter , Nature Astronomy 1
2017
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2017
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J. S. Bullock and M. Boylan-Kolchin, Small-Scale Challenges to the Λ \Lambda CDM Paradigm , ARA&A 55
2017
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2017
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2017
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2017
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M. Drewes et al., A White Paper on keV Sterile Neutrino Dark Matter , JCAP 01
2017
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K. N. Abazajian, Sterile neutrinos in cosmology , Phys. Rept. 711-712
2017
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2017
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2017
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2017
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J. García-Bellido, Massive Primordial Black Holes as Dark Matter and their detection with Gravitational Waves , in Journal of Physics Conference Series , vol. 840 of Journal of Physics Conference Series , p. 012032, May, 2017 · 2017
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2017
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T. Chiba and S. Yokoyama, Spin Distribution of Primordial Black Holes , PTEP 2017
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M. G. Santos, M. Cluver, M. Hilton, M. Jarvis, G. I. G. Jozsa, L. Leeuw et al., Meerklass: Meerkat large area synoptic survey , 2017
2017
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P. Madau, Cosmic Reionization After Planck and Before JWST: An Analytic Approach , Astrophys. J. 851
2017
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2017
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A. Mesinger, Reionization and Cosmic Dawn: theory and simulations , IAU Symp. 333
2017
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2017
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2017
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2017
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2018
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2018
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2018
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G. Bertone and D. Hooper, History of dark matter , Reviews of Modern Physics 90
2018
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2018
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J. D. Bowman, A. E. E. Rogers, R. A. Monsalve, T. J. Mozdzen and N. Mahesh, An absorption profile centred at 78 megahertz in the sky-averaged spectrum , Nature 555
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P. J. E. Peebles, Origin of the CDM Paradigm , 2018
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S. Tulin and H.-B. Yu, Dark Matter Self-interactions and Small Scale Structure , Phys. Rept. 730
2018
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J.-W. Lee, Brief History of Ultra-light Scalar Dark Matter Models , in European Physical Journal Web of Conferences , vol. 168 of European Physical Journal Web of Conferences , p. 06005, Jan., 2018 · 2018
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B. Carr and J. Silk, Primordial black holes as generators of cosmic structures , MNRAS 478
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2018
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B. V. Lehmann, S. Profumo and J. Yant, The maximal-density mass function for primordial black hole dark matter , Journal of Cosmology and Astroparticle Physics 2018
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2018
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V. Desjacques and A. Riotto, Spatial clustering of primordial black holes , Phys. Rev. D 98
2018
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2018
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J.-O. Gong and N. Kitajima, Distribution of primordial black holes and 21cm signature , JCAP 1811
2018
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2018
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2018
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2018
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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. C. Hill and E. J. Baxter, Can Early Dark Energy Explain EDGES? , JCAP 08
2018
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2018
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2018
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S. Fraser et al., The EDGES 21 cm anomaly and properties of dark Matter , Phys. Lett. B785
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2018
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A. Mitridate and A. Podo, Bounds on Dark Matter decay from 21 cm line , JCAP 1805
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A. Schneider, Constraining noncold dark matter models with the global 21-cm signal , Phys. Rev. D 98
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J. H. Wise, Cosmic reionisation , Contemporary Physics 60
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2019
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PhD thesis, Durham U., 2019
J. J. Stadler, How dark is dark matter? Robust limits on dark matter - radiation interactions from cosmological observations · 2019
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B. J. Kavanagh, bradkav/pbhbounds: Release version , Nov., 2019 · 2019
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2019
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A. Mesinger, The Cosmic 21-cm Revolution; Charting the first billion years of our universe · 2019
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2019
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2019
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C. A. Wuensche, a. pre=” and the” BINGO Collaboration, The BINGO telescope: a new instrument exploring the new 21 cm cosmology window , in Journal of Physics Conference Series , vol. 1269 of Journal of Physics Conference Series , p. 012002, July, 2019 · 2019
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P. Villanueva-Domingo, O. Mena and J. Miralda-Escudé, Maximum amplitude of the high-redshift 21-cm absorption feature , Physical Review D 101
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D. McConnell, C. L. Hale, E. Lenc, J. K. Banfield, G. Heald, A. W. Hotan et al., The rapid askap continuum survey i: Design and first results , Publications of the Astronomical Society of Australia 37
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K. N. Abazajian, Neutrinos in Astrophysics and Cosmology: Theoretical Advanced Study Institute (TASI) 2020 Lectures , in Theoretical Advanced Study Institute in Elementary Particle Physics: The Obscure Universe: Neutrinos and Other Dark Matters , 2, 2021 · 2021
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P. Villanueva-Domingo, 21cmbounds , Mar., 2021 · 2021
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P. Villanueva-Domingo, Pablovd/21cmdeeplearning: 21cmdeeplearning , Mar., 2021 · 2021
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