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The NANOGrav collaboration for the pulsar timing array (PTA) observation recently announced evidence of an isotropic stochastic process, which may be the first detection of the stochastic gravitational-wave (GW) background.
I. Ben-Dayan, B. Keating, D. Leon, and I. Wolfson, “Constraints on scalar and tensor spectra from
1903
Earlier work this paper cites.
1903
Earlier work this paper cites.
1903
Earlier work this paper cites.
1904
Earlier work this paper cites.
1905
Earlier work this paper cites.
1907
Earlier work this paper cites.
1907
Earlier work this paper cites.
V. Vaskonen and H. Veermäe, “Lower bound on the primordial black hole merger rate,”
1908
Earlier work this paper cites.
J.-O. Gong, “Analytic integral solutions for induced gravitational waves,”
1909
Earlier work this paper cites.
1909
Earlier work this paper cites.
1910
Earlier work this paper cites.
1910
Earlier work this paper cites.
1910
Earlier work this paper cites.
1910
Earlier work this paper cites.
1911
Earlier work this paper cites.
S. S. Mishra and V. Sahni, “Primordial Black Holes from a tiny bump/dip in the Inflaton potential,”
1911
Earlier work this paper cites.
1911
Earlier work this paper cites.
1911
Earlier work this paper cites.
K. Inomata and T. Terada, “Gauge Independence of Induced Gravitational Waves,”
1912
Earlier work this paper cites.
C. Yuan, Z.-C. Chen, and Q.-G. Huang, “Scalar induced gravitational waves in different gauges,”
1912
Earlier work this paper cites.
T. Suyama and S. Yokoyama, “A novel formulation of the primordial black hole mass function,”
1912
Earlier work this paper cites.
1912
Earlier work this paper cites.
K. Tomita, “Non-linear theory of gravitational instability in the expanding universe,”
1967
Earlier work this paper cites.
S. Hawking, “Gravitationally collapsed objects of very low mass,”
1971
Earlier work this paper cites.
B. J. Carr and S. Hawking, “Black holes in the early Universe,”
1974
Earlier work this paper cites.
W. H. Press and P. Schechter, “Formation of galaxies and clusters of galaxies by selfsimilar gravitational condensation,”
1974
Earlier work this paper cites.
B. J. Carr, “The Primordial black hole mass spectrum,”
1975
Earlier work this paper cites.
R. Hellings and G. Downs, “UPPER LIMITS ON THE ISOTROPIC GRAVITATIONAL RADIATION BACKGROUND FROM PULSAR TIMING ANALYSIS,”
1983
Earlier work this paper cites.
J. M. Bardeen, J. Bond, N. Kaiser, and A. Szalay, “The Statistics of Peaks of Gaussian Random Fields,”
1986
Earlier work this paper cites.
M. W. Choptuik, “Universality and scaling in gravitational collapse of a massless scalar field,”
1993
Earlier work this paper cites.
S. Matarrese, O. Pantano, and D. Saez, “General relativistic dynamics of irrotational dust: Cosmological implications,”
1994
Earlier work this paper cites.
K. Jedamzik, “Primordial black hole formation during the QCD epoch,”
1997
Earlier work this paper cites.
S. Matarrese, S. Mollerach, and M. Bruni, “Second order perturbations of the Einstein-de Sitter universe,”
1998
Earlier work this paper cites.
J. C. Niemeyer and K. Jedamzik, “Near-critical gravitational collapse and the initial mass function of primordial black holes,”
1998
Earlier work this paper cites.
M. Shibata and M. Sasaki, “Black hole formation in the Friedmann universe: Formulation and computation in numerical relativity,”
1999
Earlier work this paper cites.
A. M. Green and A. R. Liddle, “Critical collapse and the primordial black hole initial mass function,”
1999
Earlier work this paper cites.
N. Seto, S. Kawamura, and T. Nakamura, “Possibility of direct measurement of the acceleration of the universe using 0.1-Hz band laser interferometer gravitational wave antenna in space,”
2001
Earlier work this paper cites.
B. Carr, K. Kohri, Y. Sendouda, and J. Yokoyama, “Constraints on Primordial Black Holes,”
2002
Earlier work this paper cites.
2002
Earlier work this paper cites.
2003
Earlier work this paper cites.
A. Sesana, F. Haardt, P. Madau, and M. Volonteri, “Low - frequency gravitational radiation from coalescing massive black hole binaries in hierarchical cosmologies,”
2004
Earlier work this paper cites.
2005
Earlier work this paper cites.
S. Pi and M. Sasaki, “Gravitational Waves Induced by Scalar Perturbations with a Lognormal Peak,”
2005
Earlier work this paper cites.
I. Musco, J. C. Miller, and L. Rezzolla, “Computations of primordial black hole formation,”
2005
Cited alongside, same era.
2005
Cited alongside, same era.
2006
Cited alongside, same era.
B. Carr and F. Kuhnel, “Primordial Black Holes as Dark Matter: Recent Developments,”
2006
Cited alongside, same era.
G. M. Harry, P. Fritschel, D. A. Shaddock, W. Folkner, and E. S. Phinney, “Laser interferometry for the big bang observer,”
2006
2014
Later among the works it cites.
T. Harada, C.-M. Yoo, and K. Kohri, “Threshold of primordial black hole formation,”
2014
Later among the works it cites.
S. Young, C. T. Byrnes, and M. Sasaki, “Calculating the mass fraction of primordial black holes,”
2014
Later among the works it cites.
2015
Later among the works it cites.
2015
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Cited alongside, same era.
K. N. Ananda, C. Clarkson, and D. Wands, “The Cosmological gravitational wave background from primordial density perturbations,”
2007
Cited alongside, same era.
D. Baumann, P. J. Steinhardt, K. Takahashi, and K. Ichiki, “Gravitational Wave Spectrum Induced by Primordial Scalar Perturbations,”
2007
Cited alongside, same era.
2007
Cited alongside, same era.
A. G. Polnarev and I. Musco, “Curvature profiles as initial conditions for primordial black hole formation,”
2007
Cited alongside, same era.
2007
Cited alongside, same era.
2008
Cited alongside, same era.
2008
Cited alongside, same era.
Later among the works it cites.
2015
Later among the works it cites.
C. J. Moore, R. H. Cole, and C. P. L. Berry, “Gravitational-wave sensitivity curves,”
2015
Later among the works it cites.
2016
Later among the works it cites.
B. Carr, F. Kuhnel, and M. Sandstad, “Primordial Black Holes as Dark Matter,”
2016
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2017
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2017
Later among the works it cites.
2017
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2017
Later among the works it cites.
Y. Ali-Haïmoud, E. D. Kovetz, and M. Kamionkowski, “Merger rate of primordial black-hole binaries,”
2017
Later among the works it cites.
P. Amaro-Seoane and Others, “Laser Interferometer Space Antenna,”
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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2018
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2018
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2018
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2018
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M. Cicoli, V. A. Diaz, and F. G. Pedro, “Primordial Black Holes from String Inflation,”
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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2018
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2019
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2019
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R.-g. Cai, S. Pi, and M. Sasaki, “Gravitational Waves Induced by non-Gaussian Scalar Perturbations,”
2019
Later among the works it cites.
C. Unal, “Imprints of Primordial Non-Gaussianity on Gravitational Wave Spectrum,”
2019
Later among the works it cites.
12, 2019
M. Takada, “Constraining PBH with microlensing,” in · 2019
Later among the works it cites.
M. Hazumi
2019
Later among the works it cites.
2020
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W.-H. Ruan, Z.-K. Guo, R.-G. Cai, and Y.-Z. Zhang, “Taiji program: Gravitational-wave sources,”
2020
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private communication
G. Franciolini, 9, 2020 · 2020
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