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Hyper-Eddington accretion flows onto massive black holes

, , and . (2015)cite arxiv:1511.02116Comment: 21 pages, 14 figures, submitted to MNRAS.

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Does disk fragmentation prevent the formation of supermassive stars in protogalaxies?, and . (Jun 19, 2014)Self-consistent Semi-analytic Modeling of Feedback During Primordial Star Formation and Reionization, , and . (2020)cite arxiv:2001.11118Comment: 16 pages, 7 figures, to be submitted to ApJ.MassiveNuS: Cosmological Massive Neutrino Simulations, , , , , , , and . (2017)cite arxiv:1711.10524Comment: 25 pages, 9 figures, submitted to JCAP. Data available at http://columbialensing.org.Low density, radiatively inefficient rotating-accretion flow onto a black hole, , , and . (Sep 21, 2017)Hyper-Eddington accretion flows onto massive black holes, , and . (2015)cite arxiv:1511.02116Comment: 21 pages, 14 figures, submitted to MNRAS.Evolution in the Escape Fraction of Ionizing Photons and the Decline in Strong Lya Emission from z>6 Galaxies, , , , and . (2014)cite arxiv:1401.7676Comment: 9 pages, 3 figures. Resubmitted to MNRAS following revision based on referee report.The Migration of Gap-Opening Planets is not Locked to Viscous Disk Evolution, , , , and . (2014)cite arxiv:1405.3711Comment: ApJ Accepted.Rapid Formation of Massive Black Holes in close proximity to Embryonic Proto-Galaxies, , , , , and . (2017)cite arxiv:1703.03805Comment: Published in Nature Astronomy, March 13th 2017.Non-Gaussian information from weak lensing data via deep learning., , , and . CoRR, (2018)Suppression of H2-cooling in protogalaxies aided by trapped Ly\alpha cooling radiation, , and . (2020)cite arxiv:2001.05498Comment: 8 pages, 5 figures.