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The possible existence of primordial black holes (PBHs) is an open question in modern cosmology.
Theory of Probability
H. Jeffreys · 1961
Earlier work this paper cites.
Gravitational radiation from colliding black holes
S. W. Hawking · 1971
Earlier work this paper cites.
Black Holes in the Early Universe
B. J. Carr and S. W. Hawking · 1974
Earlier work this paper cites.
Bubble collisions in the very early universe
S. W. Hawking, I. G. Moss, and J. M. Stewart · 1982
Earlier work this paper cites.
Black-hole bubbles
I. G. Moss · 1985
Earlier work this paper cites.
The magnitude–redshift relation in a perturbed friedmann universe
Misao Sasaki · 1987
Earlier work this paper cites.
Black holes from cosmic strings
S. W. Hawking · 1989
Earlier work this paper cites.
Primordial black holes and generalized constraints on chaotic inflation
B. J. Carr and James E. Lidsey · 1993
Earlier work this paper cites.
Effects of friction on cosmic strings
Jaume Garriga and Maria Sakellariadou · 1993
Earlier work this paper cites.
Black hole relics and inflation: Limits on blue perturbation spectra
B. J. Carr, J. H. Gilbert, and James E. Lidsey · 1994
Earlier work this paper cites.
Gravitational waves from coalescing black hole macho binaries
Takashi Nakamura, Misao Sasaki, Takahiro Tanaka, and Kip S. Thorne · 1997
Earlier work this paper cites.
Large scale bias in the universe: Bispectrum method
S. Matarrese, Licia Verde, and A. F. Heavens · 1997
Earlier work this paper cites.
Chaotic new inflation and formation of primordial black holes
Jun’ichi Yokoyama · 1998
Earlier work this paper cites.
Black hole binary formation in the expanding universe: Three body problem approximation
Kunihito Ioka, Takeshi Chiba, Takahiro Tanaka, and Takashi Nakamura · 1998
Earlier work this paper cites.
Black hole constraints on the running-mass inflation model
Samuel M. Leach, Ian J. Grivell, and Andrew R. Liddle · 2000
Earlier work this paper cites.
MACHO project limits on black hole dark matter in the 1–30 [ITAL]m[/ITAL][TINF] ⊙ \odot [/TINF] range
C. Alcock, R. A. Allsman, D. R. Alves, T. S. Axelrod, A. C. Becker, D. P. Bennett, K. H. Cook, N. Dalal, A. J. Drake, K. C. Freeman, M. Geha, K. Griest, M. J. Lehner, S. L. Marshall, D. Minniti, C. A. Nelson, B. A. Peterson, P. Popowski, M. R. Pratt, P. J. Quinn, C. W. Stubbs, W. Sutherland, A. B. Tomaney, T. Vandehei, D. L. Welch, and (The MACHO Collaboration) · 2001
Earlier work this paper cites.
Primordial density perturbation in the curvaton scenario
David H. Lyth, Carlo Ungarelli, and David Wands · 2003
Earlier work this paper cites.
The luminosity distance in perturbed FLRW space-times
T. Pyne and M. Birkinshaw · 2004
Earlier work this paper cites.
Computations of primordial black hole formation
Ilia Musco, John C. Miller, and Luciano Rezzolla · 2005
Earlier work this paper cites.
Correlated fluctuations in luminosity distance and the importance of peculiar motion in supernova surveys
Lam Hui and Patrick B. Greene · 2006
Earlier work this paper cites.
More hilltop inflation models
Kazunori Kohri, Chia-Min Lin, and David H Lyth · 2007
Earlier work this paper cites.
Curvature profiles as initial conditions for primordial black hole formation
Alexander G. Polnarev and Ilia Musco · 2007
Earlier work this paper cites.
Error analysis in cross-correlation of sky maps: application to the integrated sachs-wolfe detection
A. Cabre, P. Fosalba, E. Gaztanaga, and M. Manera · 2007
Earlier work this paper cites.
Limits on the macho content of the galactic halo from the EROS-2 survey of the magellanic clouds
P. Tisserand, L. Le Guillou, C. Afonso, J. N. Albert, J. Andersen, R. Ansari, É . Aubourg, P. Bareyre, J. P. Beaulieu, X. Charlot, C. Coutures, R. Ferlet, P. Fouqué, J. F. Glicenstein, B. Goldman, A. Gould, D. Graff, M. Gros, J. Haissinski, C. Hamadache, J. de Kat, T. Lasserre, É. Lesquoy, C. Loup, C. Magneville, J. B. Marquette, É. Maurice, A. Maury, A. Milsztajn, M. Moniez, N. Palanque-Delabrouille, O. Perdereau, Y. R. Rahal, J. Rich, M. Spiro, A. Vidal-Madjar, and L. Vigroux and · 2007
Earlier work this paper cites.
On model selection forecasting, dark energy and modified gravity
A. F. Heavens, T. D. Kitching, and L. Verde · 2007
Earlier work this paper cites.
Evolutionary Processes in Binary and Multiple Stars
Peter Eggleton · 2009
Earlier work this paper cites.
The einstein telescope: a third-generation gravitational wave observatory
M. Punturo et al · 2010
Earlier work this paper cites.
Primordial Black Holes
Maxim Yu. Khlopov · 2010
Earlier work this paper cites.
New cosmological constraints on primordial black holes
B. J. Carr, Kazunori Kohri, Yuuiti Sendouda, and Jun’ichi Yokoyama · 2010
Earlier work this paper cites.
The Large Scale Bias of Dark Matter Halos: Numerical Calibration and Model Tests
Jeremy L. Tinker, Brant E. Robertson, Andrey V. Kravtsov, Anatoly Klypin, Michael S. Warren, Gustavo Yepes, and Stefan Gottlober · 2010
Earlier work this paper cites.
Linear power spectrum of observed source number counts
Anthony Challinor and Antony Lewis · 2011
Earlier work this paper cites.
Scientific objectives of einstein telescope
B. Sathyaprakash, M. Abernathy, F. Acernese, P. Ajith, B. Allen, P. Amaro-Seoane, N. Andersson, S. Aoudia, K. Arun, P. Astone, and et al · 2012
Earlier work this paper cites.
Inference of cosmological parameters from gravitational waves: Applications to second generation interferometers
Walter Del Pozzo · 2012
Earlier work this paper cites.
Primordial black hole formation in the early universe: critical behaviour and self-similarity
Ilia Musco and John C. Miller · 2013
Earlier work this paper cites.
Common envelope evolution: where we stand and how we can move forward
N. Ivanova, S. Justham, X. Chen, O. De Marco, C. L. Fryer, E. Gaburov, H. Ge, E. Glebbeek, Z. Han, X. D. Li, G. Lu, T. Marsh, P. Podsiadlowski, A. Potter, N. Soker, R. Taam, T. M. Tauris, E. P. J. van den Heuvel, and R. F. Webbink · 2013
Earlier work this paper cites.
Cosmology with the SPHEREX All-Sky Spectral Survey, 12 2014
Olivier Doré et al · 2014
Earlier work this paper cites.
Primordial blackholes and gravitational waves for an inflection-point model of inflation
Sayantan Choudhury and Anupam Mazumdar · 2014
Earlier work this paper cites.
Signatures of primordial black hole dark matter
K. M. Belotsky, A. D. Dmitriev, E. A. Esipova, V. A. Gani, A. V. Grobov, M. Yu. Khlopov, A. A. Kirillov, S. G. Rubin, and I. V. Svadkovsky · 2014
Earlier work this paper cites.
Cosmic star-formation history
Piero Madau and Mark Dickinson · 2014
Earlier work this paper cites.
Cosmological parameter estimation with large scale structure observations
Enea Di Dio, Francesco Montanari, Ruth Durrer, and Julien Lesgourgues · 2014
Earlier work this paper cites.
THE END OF THE MACHO ERA, REVISITED: NEW LIMITS ON MACHO MASSES FROM HALO WIDE BINARIES
Miguel A. Monroy-Rodrí guez and Christine Allen · 2014
Earlier work this paper cites.
Signatures of non-gaussianity in the isocurvature modes of primordial black hole dark matter
Sam Young and Christian T. Byrnes · 2015
Earlier work this paper cites.
Binary black hole mergers in the first advanced ligo observing run
B.P. Abbott et al · 2016
Cited alongside, same era.
Anisotropies of gravitational-wave standard sirens as a new cosmological probe without redshift information
Toshiya Namikawa, Atsushi Nishizawa, and Atsushi Taruya · 2016
Cited alongside, same era.
Did ligo detect dark matter?
Simeon Bird, Ilias Cholis, Julian B. Muñoz, Yacine Ali-Haïmoud, Marc Kamionkowski, Ely D. Kovetz, Alvise Raccanelli, and Adam G. Riess · 2016
Cited alongside, same era.
Determining the progenitors of merging black-hole binaries
Alvise Raccanelli, Ely D. Kovetz, Simeon Bird, Ilias Cholis, and Julian B. Muñoz · 2016
Cited alongside, same era.
Primordial black holes as dark matter
Bernard Carr, Florian Kühnel, and Marit Sandstad · 2016
Cited alongside, same era.
Science Impacts of the SPHEREx All-Sky Optical to Near-Infrared Spectral Survey: Report of a Community Workshop Examining Extragalactic, Galactic, Stellar and Planetary Science, 6 2016
Primordial black holes from cusp collapse on cosmic strings, 6 2020
Alexander C. Jenkins and Mairi Sakellariadou · 2020
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Primordial black holes confront ligo/virgo data: current situation
V. De Luca, G. Franciolini, P. Pani, and A. Riotto · 2020
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Planck 2018 results. vi. cosmological parameters
The Planck Collaboration · 2020
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Beware of commonly used approximations. part i. errors in forecasts
Nicola Bellomo, José Luis Bernal, Giulio Scelfo, Alvise Raccanelli, and Licia Verde · 2020
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Exploring galaxies-gravitational waves cross-correlations as an astrophysical probe
Giulio Scelfo, Lumen Boco, Andrea Lapi, and Matteo Viel · 2020
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Antisymmetric cross-correlation of line-intensity maps as a probe of reionization
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Olivier Doré et al · 2016
Cited alongside, same era.
Gravitational wave astronomy with radio galaxy surveys
Alvise Raccanelli · 2017
Cited alongside, same era.
Merger rate of primordial black-hole binaries
Yacine Ali-Haïmoud, Ely D. Kovetz, and Marc Kamionkowski · 2017
Cited alongside, same era.
Cosmological constraints with clustering-based redshifts
Ely D. Kovetz, Alvise Raccanelli, and Mubdi Rahman · 2017
Cited alongside, same era.
Gw×lss: chasing the progenitors of merging binary black holes
Giulio Scelfo, Nicola Bellomo, Alvise Raccanelli, Sabino Matarrese, and Licia Verde · 2018
Cited alongside, same era.
Cosmological perturbation effects on gravitational-wave luminosity distance estimates
D. Bertacca et al · 2018
Cited alongside, same era.
The large scale structure in the 3d luminosity-distance space and its cosmological applications, 2018
P. Zhang · 2018
Cited alongside, same era.
Gabriela Sato-Polito, José Luis Bernal, Ely D. Kovetz, and Marc Kamionkowski · 2020
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The integrated angular bispectrum
Gabriel Jung, Filippo Oppizzi, Andrea Ravenni, and Michele Liguori · 2020
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Initial clustering and the primordial black hole merger rate
Sam Young and Christian T. Byrnes · 2020
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LIGO/virgo black holes and dark matter: the effect of spatial clustering
Vicente Atal, Albert Sanglas, and Nikolaos Triantafyllou · 2020
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Cosmic microwave background bounds on primordial black holes including dark matter halo accretion
Pasquale D. Serpico, Vivian Poulin, Derek Inman, and Kazunori Kohri · 2020
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Pulsar timing array constraints on primordial black holes with NANOGrav 11-year dataset
Zu-Cheng Chen, Chen Yuan, and Qing-Guo Huang · 2020
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Beware of commonly used approximations. part II. estimating systematic biases in the best-fit parameters
José Luis Bernal, Nicola Bellomo, Alvise Raccanelli, and Licia Verde · 2020
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Gwtc-2: Compact binary coalescences observed by ligo and virgo during the first half of the third observing run
LIGO Scientific Collaboration and Virgo Collaboration · 2021
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Gwtc-2.1: Deep extended catalog of compact binary coalescences observed by ligo and virgo during the first half of the third observing run, 2021
The LIGO Scientific Collaboration and the Virgo Collaboration · 2021
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Gravitational wave mergers as tracers of large scale structures
S. Libanore, M. C. Artale, D. Karagiannis, M. Liguori, N. Bartolo, Y. Bouffanais, N. Giacobbo, M. Mapelli, and S. Matarrese · 2021
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A horizon study for cosmic explorer: Science, observatories, and community, 2021
Matthew Evans, Rana X Adhikari, Chaitanya Afle, Stefan W. Ballmer, Sylvia Biscoveanu, Ssohrab Borhanian, Duncan A. Brown, Yanbei Chen, Robert Eisenstein, Alexandra Gruson, Anuradha Gupta, Evan D. Hall, Rachael Huxford, Brittany Kamai, Rahul Kashyap, Jeff S. Kissel, Kevin Kuns, Philippe Landry, Amber Lenon, Geoffrey Lovelace, Lee McCuller, Ken K. Y. Ng, Alexander H. Nitz, Jocelyn Read, B. S. Sathyaprakash, David H. Shoemaker, Bram J. J. Slagmolen, Joshua R. Smith, Varun Srivastava, Ling Sun, Salvatore Vitale, and Rainer Weiss · 2021
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Current status of space gravitational wave antenna DECIGO and B-DECIGO
Seiji Kawamura et al · 2021
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On the importance of source population models for gravitational-wave cosmology
S. Mastrogiovanni, K. Leyde, C. Karathanasis, E. Chassande-Mottin, D. A. Steer, J. Gair, A. Ghosh, R. Gray, S. Mukherjee, and S. Rinaldi · 2021
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Accurate precision cosmology with redshift unknown gravitational wave sources
S. Mukherjee et al · 2021
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Constraints on primordial black holes
Bernard Carr, Kazunori Kohri, Yuuiti Sendouda, and Jun’ichi Yokoyama · 2021
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Analyzing clustering of astrophysical gravitational-wave sources: luminosity-distance space distortions
T. Namikawa · 2021
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Multimessenger probes of inflationary fluctuations and primordial black holes
Caner Ünal, Ely D. Kovetz, and Subodh P. Patil · 2021
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Mapping the cosmic expansion history from LIGO-Virgo-KAGRA in synergy with DESI and SPHEREx
Cristina Cigarran Diaz and Suvodip Mukherjee · 2022
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Clustering of gravitational wave and supernovae events: a multitracer analysis in luminosity distance space
S. Libanore, M.C. Artale, D. Karagiannis, M. Liguori, N. Bartolo, Y. Bouffanais, M. Mapelli, and S. Matarrese · 2022
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Gravitational waves × HI intensity mapping: cosmological and astrophysical applications
Giulio Scelfo, Marta Spinelli, Alvise Raccanelli, Lumen Boco, Andrea Lapi, and Matteo Viel · 2022
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In preparation
D. Bertacca and A. et al. Begnoni · 2022
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Primordial black holes as dark matter candidates
Bernard Carr and Florian Kuhnel · 2022
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Searching for a subpopulation of primordial black holes in LIGO-Virgo gravitational-wave data
Gabriele Franciolini, Vishal Baibhav, Valerio De Luca, Ken K. Y. Ng, Kaze W. K. Wong, Emanuele Berti, Paolo Pani, Antonio Riotto, and Salvatore Vitale · 2022
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Science-driven Tunable Design of Cosmic Explorer Detectors
Varun Srivastava, Derek Davis, Kevin Kuns, Philippe Landry, Stefan Ballmer, Matthew Evans, Evan D. Hall, Jocelyn Read, and B. S. Sathyaprakash · 2022
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Forecasting the Detection Capabilities of Third-generation Gravitational-wave Detectors Using GWFAST
Francesco Iacovelli, Michele Mancarella, Stefano Foffa, and Michele Maggiore · 2022
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Broad search for gravitational waves from subsolar-mass binaries through LIGO and virgo’s third observing run
Alexander H. Nitz and Yi-Fan Wang · 2022
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Population of Merging Compact Binaries Inferred Using Gravitational Waves through GWTC-3
R. Abbott et al · 2023
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The observed number counts in luminosity distance space, 4 2023
José Fonseca, Stefano Zazzera, Tessa Baker, and Chris Clarkson · 2023
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Constraining extended cosmologies with gw × \times lss cross-correlations, 2023
Michele Bosi, Nicola Bellomo, and Alvise Raccanelli · 2023
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In preparation
F. Spezzati, E. Vanzan, S. Libanore, A. Raccanelli, and Y. Wang · 2023
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Enhance primordial black hole abundance through the non-linear processes around bounce point
Jie-Wen Chen, Mian Zhu, Sheng-Feng Yan, Qing-Qing Wang, and Yi-Fu Cai · 2023
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L. Valbusa Dall’Armi, E. Vanzan, S. Libanore, N. Bellomo, and A. Raccanelli · 2023
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Clustering of binary black hole mergers: a detailed analysis of the eagle+mobse simulation, 2023
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A standard siren measurement of the hubble constant from GW170817 without the electromagnetic counterpart
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Constraining high-redshift stellar-mass primordial black holes with next-generation ground-based gravitational-wave detectors
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CONSTRAINTS ON MACHO DARK MATTER FROM COMPACT STELLAR SYSTEMS IN ULTRA-FAINT DWARF GALAXIES
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