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Binary black holes formed via different pathways are predicted to have distinct spin properties.
1904
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2001
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2011
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B. P. Abbott, R. Abbott, T. D. Abbott, M. R. Abernathy, F. Acernese, and et al. (LIGO Scientific Collaboration and Virgo Collaboration), “Observation of gravitational waves from a binary black hole merger,” Phys. Rev. Lett. 116
2016
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2016
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2017
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Simon Stevenson, Christopher P. L. Berry, and Ilya Mandel, “Hierarchical analysis of gravitational-wave measurements of binary black hole spin–orbit misalignments,” Monthly Notices of the Royal Astronomical Society 471
2017
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Will M. Farr, Simon Stevenson, M. Coleman Miller, Ilya Mandel, Ben Farr, and Alberto Vecchio, “Distinguishing spin-aligned and isotropic black hole populations with gravitational waves,” Nature 548
2017
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Colm Talbot and Eric Thrane, “Determining the population properties of spinning black holes,” Physical Review D 96
2017
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Davide Gerosa, Emanuele Berti, Richard O’Shaughnessy, Krzysztof Belczynski, Michael Kesden, Daniel Wysocki, and Wojciech Gladysz, “Spin orientations of merging black holes formed from the evolution of stellar binaries,” Physical Review D 98
2018
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Colm Talbot and Eric Thrane, “Measuring the binary black hole mass spectrum with an astrophysically motivated parameterization,” The Astrophysical Journal 856
2018
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Maya Fishbach, Daniel E. Holz, and Will M. Farr, “Does the black hole merger rate evolve with redshift?” The Astrophysical Journal 863
2018
Cited alongside, same era.
Jim Fuller and Linhao Ma, “Most black holes are born very slowly rotating,” The Astrophysical Journal 881
2019
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Gregory Ashton, Moritz Hübner, Paul D. Lasky, Colm Talbot, Kendall Ackley, Sylvia Biscoveanu, Qi Chu, Atul Divakarla, Paul J. Easter, Boris Goncharov, Francisco Hernandez Vivanco, Jan Harms, Marcus E. Lower, Grant D. Meadors, Denyz Melchor, Ethan Payne, Matthew D. Pitkin, Jade Powell, Nikhil Sarin, Rory J. E. Smith, and Eric Thrane, “Bilby: A user-friendly bayesian inference library for gravitational-wave astronomy,” The Astrophysical Journal Supplement Series 241
2019
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Eric Thrane and Colm Talbot, “An introduction to bayesian inference in gravitational-wave astronomy: Parameter estimation, model selection, and hierarchical models,” Publications of the Astronomical Society of Australia 36
Seth Olsen, Tejaswi Venumadhav, Jonathan Mushkin, Javier Roulet, Barak Zackay, and Matias Zaldarriaga, “New binary black hole mergers in the ligo–virgo o3a data,” (2022)
2022
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2022
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Christian Adamcewicz and Eric Thrane, “Do unequal-mass binary black hole systems have larger χ eff \chi_{\text{eff}} ? probing correlations with copulas in gravitational-wave astronomy,” (2022)
2022
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Thomas A. Callister, Simona J. Miller, Katerina Chatziioannou, and Will M. Farr, “No evidence that the majority of black holes in binaries have zero spin,” (2022)
2022
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2019
Cited alongside, same era.
Michela Mapelli, “Binary black hole mergers: formation and populations,” Frontiers in Astronomy and Space Sciences 7
2020
Cited alongside, same era.
I M Romero-Shaw, C Talbot, S Biscoveanu, V D’Emilio, G Ashton, C P L Berry, S Coughlin, S Galaudage, C Hoy, M Hübner, K S Phukon, M Pitkin, M Rizzo, N Sarin, R Smith, S Stevenson, A Vajpeyi, M Arène, K Athar, S Banagiri, N Bose, M Carney, K Chatziioannou, J A Clark, M Colleoni, R Cotesta, B Edelman, H Estellés, C García-Quirós, Abhirup Ghosh, R Green, C-J Haster, S Husa, D Keitel, A X Kim, F Hernandez-Vivanco, I Magaña Hernandez, C Karathanasis, P D Lasky, N De Lillo, M E Lower, D Macleod, M Mateu-Lucena, A Miller, M Millhouse, S Morisaki, S H Oh, S Ossokine, E Payne, J Powell, G Pratten, M Pürrer, A Ramos-Buades, V Raymond, E Thrane, J Veitch, D Williams, M J Williams, and L Xiao, “Bayesian inference for compact binary coalescences with bilby: validation and application to the first ligo–virgo gravitational-wave transient catalogue,” Monthly Notices of the Royal Astronomical Society 499
2020
Cited alongside, same era.
Simona Miller, Thomas A. Callister, and Will M. Farr, “The low effective spin of binary black holes and implications for individual gravitational-wave events,” Astrophys. J. 895
2020
Cited alongside, same era.
Ilya Mandel and Tassos Fragos, “An alternative interpretation of GW190412 as a binary black hole merger with a rapidly spinning secondary,” Astrophys. J. Lett. 895
2020
Cited alongside, same era.
2021
Cited alongside, same era.
Alexander H. Nitz, Collin D. Capano, Sumit Kumar, Yi-Fan Wang, Shilpa Kastha, Marlin Schäfer, Rahul Dhurkunde, and Miriam Cabero, “3-OGC: Catalog of gravitational waves from compact-binary mergers,” The Astrophysical Journal 922
2021
Cited alongside, same era.
Shanika Galaudage, Colm Talbot, Tushar Nagar, Deepnika Jain, Eric Thrane, and Ilya Mandel, “Building better spin models for merging binary black holes: Evidence for nonspinning and rapidly spinning nearly aligned subpopulations,” The Astrophysical Journal Letters 921
2021
Cited alongside, same era.
Javier Roulet, Horng Sheng Chia, Seth Olsen, Liang Dai, Tejaswi Venumadhav, Barak Zackay, and Matias Zaldarriaga, “Distribution of effective spins and masses of binary black holes from the LIGO and virgo o1–o3a observing runs,” Phys. Rev. D 104
2021
Cited alongside, same era.
2022
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Sylvia Biscoveanu, Thomas A. Callister, Carl-Johan Haster, Ken K. Y. Ng, Salvatore Vitale, and Will M. Farr, “The binary black hole spin distribution likely broadens with redshift,” The Astrophysical Journal Letters 932
2022
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Maya Fishbach, Chase Kimball, and Vicky Kalogera, “Limits on hierarchical black hole mergers from the most negative χ eff \chi_{\text{eff}} systems,” The Astrophysical Journal Letters 935
2022
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S Stevenson, “Biases in estimates of black hole kicks from the spin distribution of binary black holes,” Astrophys. J. Lett. 926
2022
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I. M. Romero-Shaw, Eric Thrane, and Paul D. Lasky, “When models fail: an introduction to posterior predictive checks and model misspecification in gravitational-wave astronomy,” Pub. Astron. Soc. Aust. 39
2022
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Ethan Payne, Sophie Hourihane, Jacob Golomb, Richard Udall, Derek Davis, and Katerina Chatziioannou, “The curious case of gw200129: interplay between spin-precession inference and data-quality issues,” (2022), arxiv/2206.11932
2022
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Mark Hannam et al. , “Measurement of general-relativistic precession in a black-hole binary,” (2022), arxiv/2112.11300
2022
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F Broekgaarden, S Stevenson, and E Thrane, “Signatures of mass ratio reversal in gravitational waves from merging binary black holes,” (2022), arxiv/2205.01693
2022
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Ying Qin, Yuan-Zhu Wang, Dong-Hong Wu, Georges Meynet, and Hanfeng Song, “On the angular momentum transport efficiency within the star constrained from gravitational-wave observations,” Astrophys. J. 924
2022
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