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The evolution of dense star clusters is followed by direct high-accuracy N-body simulation.
Fowler, W. A., Hoyle, F., Neutrino Processes and Pair Formation in Massive Stars and Supernovae
1964
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Fryer, C. L., Belczynski, K., Wiktorowicz, G., Dominik, M., Kalogera, V., Holz, D. E., Compact Remnant Mass Function: Dependence on the Explosion Mechanism and Metallicity
2012
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Hurley, J. R., Pols, O. R., Tout, C. A., SSE: Single Star Evolution
2013
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Hurley, J. R., Tout, C. A., Pols, O. R., BSE: Binary Star Evolution
2013
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Abbott, B. P., et al., Observation of Gravitational Waves from a Binary Black Hole Merger
2016
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Belczynski, K., Heger, A., Gladysz, W., Ruiter, A. J., Woosley, S., Wiktorowicz, G., Chen, H.-Y., Bulik, T., O’Shaughnessy, R., Holz, D. E., Fryer, C. L., Berti, E., The effect of pair-instability mass loss on black-hole mergers
2016
Cited alongside, same era.
Huang, S.-Y., Spurzem, R., Berczik, P., Performance analysis of parallel gravitational N-body codes on large GPU clusters
2016
Cited alongside, same era.
Woosley, S. E., Pulsational Pair-instability Supernovae
2017
Cited alongside, same era.
Gessner, A., Janka, H.-T., Hydrodynamical Neutron-star Kicks in Electron-capture Supernovae and Implications for the CRAB Supernova
2018
Cited alongside, same era.
Fuller, J., Ma, L., Most Black Holes Are Born Very Slowly Rotating
2019
Cited alongside, same era.
Aarseth, S. J., From NBODY1 to NBODY6: The Growth of an Industry
Cited in the paper.
Banerjee, S., Stellar-mass black holes in young massive and open stellar clusters - IV. Updated stellar-evolutionary and black hole spin models and comparisons with the LIGO-Virgo O1/O2 merger-event data
Cited in the paper.
Belczynski, K., Bulik, T., Fryer, C. L., Ruiter, A., Valsecchi, F., Vink, J. S., Hurley, J. R., On the Maximum Mass of Stellar Black Holes
Cited in the paper.
Belczynski, K., Kalogera, V., Bulik, T., A Comprehensive Study of Binary Compact Objects as Gravitational Wave Sources: Evolutionary Channels, Rates, and Physical Properties
Cited in the paper.
Berczik, P., Spurzem, R., Wang, L., Zhong, S., Huang, S., Up to 700k GPU cores, Kepler, and the Exascale future for simulations of star clusters around black holes
Cited in the paper.
Capuzzo-Dolcetta, R., Spera, M., Punzo, D., A fully parallel, high precision, N-body code running on hybrid computing platforms
Cited in the paper.
Giersz, M., Askar, A., Wang, L., Hypki, A., Leveque, A., Spurzem, R., MOCCA survey data base- I. Dissolution of tidally filling star clusters harbouring black hole subsystems
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Banerjee, S., Belczynski, K., Fryer, C. L., Berczik, P., Hurley, J. R., Spurzem, R., Wang, L., BSE versus StarTrack: Implementations of new wind, remnant-formation, and natal-kick schemes in NBODY7 and their astrophysical consequences
2020
Later among the works it cites.
Belczynski, K., Klencki, J., Fields, C. E., et al., Evolutionary roads leading to low effective spins, high black hole masses, and O1/O2 rates for LIGO/Virgo binary black holes
2020
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Arca-Sedda, M., Rizzuto, F. P., Naab, T., Ostriker, J., Giersz, M., Spurzem, R., Breaching the Limit: Formation of GW190521-like and IMBH Mergers in Young Massive Clusters
2021
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Sobolenko, M., Berczik, P., Spurzem, R., Merging timescale for the supermassive black hole binary in interacting galaxy NGC 6240
2021
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Banerjee, S., Merger rate density of stellar-mass binary black holes from young massive clusters, open clusters, and isolated binaries: Comparisons with LIGO-Virgo-KAGRA results
2022
Later among the works it cites.