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Recently, strong evidence for a gravitational wave background has been reported by collaborations of pulsar timing arrays (PTA).
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Jakub Scholtz and James Unwin, “What if Planet 9 is a Primordial Black Hole?” Phys. Rev. Lett. 125
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Scott Dodelson, Modern Cosmology (Academic Press, Amsterdam, 2003)
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Silvia Mollerach, Diego Harari, and Sabino Matarrese, “CMB polarization from secondary vector and tensor modes,” Phys. Rev. D69
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Jeff Crowder and Neil J. Cornish, “Beyond LISA: Exploring future gravitational wave missions,” Phys. Rev. D 72
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Tristan L. Smith, Elena Pierpaoli, and Marc Kamionkowski, “A new cosmic microwave background constraint to primordial gravitational waves,” Phys. Rev. Lett. 97
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G. M. Harry, P. Fritschel, D. A. Shaddock, W. Folkner, and E. S. Phinney, “Laser interferometry for the big bang observer,” Class. Quant. Grav. 23
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Kishore N. Ananda, Chris Clarkson, and David Wands, “The Cosmological gravitational wave background from primordial density perturbations,” Phys. Rev. D75
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Daniel Baumann, Paul J. Steinhardt, Keitaro Takahashi, and Kiyotomo Ichiki, “Gravitational Wave Spectrum Induced by Primordial Scalar Perturbations,” Phys. Rev. D76
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2008
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Peter E Dewdney, Peter J Hall, Richard T Schilizzi, and T Joseph LW Lazio, “The square kilometre array,” Proceedings of the IEEE 97
2009
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2010
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M. Punturo et al. , “The Einstein Telescope: A third-generation gravitational wave observatory,” Proceedings, 14th Workshop on Gravitational wave data analysis (GWDAW-14): Rome, Italy, January 26-29, 2010 , Class. Quant. Grav. 27
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Gregory M. Harry (LIGO Scientific), “Advanced LIGO: The next generation of gravitational wave detectors,” Class. Quant. Grav. 27
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Chadwick A. Trujillo and Scott S. Sheppard, “A Sedna-like body with a perihelion of 80 astronomical units,” Nature (London) 507
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