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GrW 190521 , the SIMBAD biblio (219 results) | C.D.S. - SIMBAD4 rel 1.8 - 2023.03.28CEST21:05:09 |
Bibcode/DOI | Score |
in Title|Abstract| Keywords |
in a table | in teXt, Caption, ... | Nb occurence | Nb objects in ref |
Citations (from ADS) |
Title | First 3 Authors |
---|---|---|---|---|---|---|---|---|---|
2020ApJ...900L..13A | 5206 | T A | X C | 118 | 6 | ~ |
Properties and astrophysical implications of the 150 M☉ binary black hole merger GW190521. |
ABBOTT R., ABBOTT T.D., ABRAHAM S., et al. | |
2020MNRAS.498.4591F | 44 | X | 1 | 1 | ~ | Repeated mergers and ejection of black holes within nuclear star clusters. | FRAGIONE G. and SILK J. | ||
2020ApJ...902L..26F | 723 | A | X | 17 | 4 | ~ |
On the origin of GW190521-like events from repeated black hole mergers in star clusters. |
FRAGIONE G., LOEB A. and RASIO F.A. | |
2020ApJ...902L..29N | 44 | X | 1 | 3 | ~ | Gravitational-wave merger forecasting: scenarios for the early detection and localization of compact-binary mergers with ground-based observatories. | NITZ A.H., SCHAFER M. and DAL CANTON T. | ||
2020ApJ...902L..36F | 218 | S X | 4 | 10 | ~ | Constraints from gravitational-wave detections of binary black hole mergers on the 12C(α, γ)16O rate. | FARMER R., RENZO M., DE MINK S.E., et al. | ||
2020ApJ...903L...5R | 1375 | T A | S X C | 29 | 1 | ~ |
GW190521: orbital eccentricity and signatures of dynamical formation in a binary black hole merger signal. |
ROMERO-SHAW I., LASKY P.D., THRANE E., et al. | |
2020ApJ...903L..21S | 940 | T A | X C | 20 | 1 | ~ |
Formation of GW190521 via gas accretion onto Population III stellar black hole remnants born in high-redshift minihalos. |
SAFARZADEH M. and HAIMAN Z. | |
2020ApJ...903...45K | 200 | A | X | 5 | 7 | ~ | Populating the upper black hole mass gap through stellar collisions in young star clusters. | KREMER K., SPERA M., BECKER D., et al. | |
2020ApJ...903...67M | 131 | X | 3 | 4 | ~ | Black hole mergers from Hierarchical triples in dense star clusters. | MARTINEZ M.A.S., FRAGIONE G., KREMER K., et al. | ||
2020ApJ...903L..40L | 1027 | T A | X C | 22 | 1 | ~ |
The Population III origin of GW190521. |
LIU B. and BROMM V. | |
2020ApJ...903..133S | 287 | A | X | 7 | 3 | ~ | Orbital migration of interacting stellar mass black holes in disks around supermassive black holes. II. Spins and incoming objects. | SECUNDA A., BELLOVARY J., MAC LOW M.-M., et al. | |
2020MNRAS.499.3459P | 44 | X | 1 | 22 | ~ | Swift-XRT follow-up of gravitational wave triggers during the third aLIGO/Virgo observing run. | PAGE K.L., EVANS P.A., TOHUVAVOHU A., et al. | ||
2020MNRAS.499.3868T | 44 | X | 1 | 39 | ~ | A search for optical and near-infrared counterparts of the compact binary merger GW190814. | THAKUR A.L., DICHIARA S., TROJA E., et al. | ||
2020MNRAS.499.5941D | 87 | C | 1 | 4 | ~ | Cosmic rates of black hole mergers and pair-instability supernovae from chemically homogeneous binary evolution. | DU BUISSON L., MARCHANT P., PODSIADLOWSKI P., et al. | ||
2020ApJ...904L..13R | 113 | A | X | 3 | 4 | ~ | The stellar merger scenario for black holes in the pair-instability gap. | RENZO M., CANTIELLO M., METZGER B.D., et al. | |
2020ApJ...904L..26F | 2333 | T A | X C | 52 | 3 | ~ |
Minding the gap: GW190521 as a straddling binary. |
FISHBACH M. and HOLZ D.E. | |
2020ApJ...905L..15B | 984 | A | S X C | 21 | 8 | ~ | The most ordinary formation of the most unusual double black hole merger. | BELCZYNSKI K. | |
2020ApJ...905L..21U | 331 | A | S X | 7 | 1 | ~ | Pulsational pair-instability and the mass gap of Population III black holes: effects of overshooting. | UMEDA H., YOSHIDA T., NAGELE C., et al. | |
2021MNRAS.501L..49K | 1192 | T A | X C | 25 | 3 | ~ |
Formation of binary black holes similar to GW190521 with a total mass of ∼150 M☉ from Population III binary star evolution. |
KINUGAWA T., NAKAMURA T. and NAKANO H. | |
2021MNRAS.501..643L | 45 | X | 1 | 1 | ~ | Dynamical evolution of population III stellar systems and the resulting binary statistics. | LIU B., MEYNET G. and BROMM V. | ||
2021MNRAS.501.1413N | 206 | A | X | 5 | 3 | ~ | A new channel to form IMBHs throughout cosmic time. | NATARAJAN P. | |
2021MNRAS.501.2745M | 134 | X | 3 | 1 | ~ | Grids of stellar models with rotation - V. Models from 1.7 to 120 M☉ at zero metallicity. | MURPHY L.J., GROH J.H., EKSTROM S., et al. | ||
2021ApJ...906L..11Z | 134 | X | 3 | 5 | ~ | Neutron star mergers in active galactic nucleus accretion disks: cocoon and ejecta shock breakouts. | ZHU J.-P., ZHANG B., YU Y.-W., et al. | ||
2021ApJ...907L...9N | 1505 | T A | X C | 32 | 7 | ~ |
GW190521 may be an intermediate-mass ratio inspiral. |
NITZ A.H. and CAPANO C.D. | |
2021ApJ...907L..19V | 654 | A | S X C | 13 | 5 | ~ | Massive Stellar triples leading to sequential binary black hole mergers in the field. | VIGNA-GOMEZ A., TOONEN S., RAMIREZ-RUIZ E., et al. | |
2021ApJ...907L..20T | 475 | A | X C | 10 | 5 | ~ | Eccentric black hole mergers in active galactic nuclei. | TAGAWA H., KOCSIS B., HAIMAN Z., et al. | |
2021A&A...645A..54K | 45 | X | 1 | 17 | ~ | It has to be cool: Supergiant progenitors of binary black hole mergers from common-envelope evolution. | KLENCKI J., NELEMANS G., ISTRATE A.G., et al. | ||
2021ApJ...907L..48V | 1702 | A | D | X | 39 | 11 | ~ | Search for black hole merger families. | VESKE D., SULLIVAN A.G., MARKA Z., et al. |
2021ApJ...907...97K | 45 | X | 1 | 10 | ~ | Swift multiwavelength follow-up of LVC S200224ca and the implications for binary black hole mergers. | KLINGLER N.J., LIEN A., OATES S.R., et al. | ||
2021ApJ...908...23M | 45 | X | 1 | 4 | ~ | Wave-driven shocks in stellar outbursts: dynamics, envelope heating, and nascent blast waves. | MATZNER C.D. and RO S. | ||
2021ApJ...908...59R | 788 | T A | S X C | 15 | 2 | ~ |
Growth of stellar-mass black holes in dense molecular clouds and GW190521. |
RICE J.R. and ZHANG B. | |
2021MNRAS.501.4514C | 627 | T A | D | X F | 13 | 4 | ~ |
Formation of GW190521 from stellar evolution: the impact of the hydrogen-rich envelope, dredge-up, and 12C(α, γ)16O rate on the pair-instability black hole mass gap. |
COSTA G., BRESSAN A., MAPELLI M., et al. |
2021MNRAS.501.5257R | 224 | X | 5 | 19 | ~ | Intermediate mass black hole formation in compact young massive star clusters. | RIZZUTO F.P., NAAB T., SPURZEM R., et al. | ||
2021MNRAS.502L..40F | 430 | T A | X C | 8 | 1 | ~ |
Is GW190521 the merger of black holes from the first stellar generations? |
FARRELL E., GROH J.H., HIRSCHI R., et al. | |
2021MNRAS.502.1136M | 90 | X | 2 | 2 | ~ | Testing the general theory of relativity using gravitational wave propagation from dark standard sirens. | MUKHERJEE S., WANDELT B.D. and SILK J. | ||
2021ApJ...909L..13Z | 161 | A | X C | 3 | 5 | ~ | Equilibrium eccentricity of accreting binaries. | ZRAKE J., TIEDE C., MacFADYEN A., et al. | |
2021MNRAS.502.1612S | 90 | C | 1 | 4 | ~ | Improved early warning of compact binary mergers using higher modes of gravitational radiation: a population study. | SINGH M.K., KAPADIA S.J., SHAIKH M.A., et al. | ||
2021MNRAS.502.1925L | 45 | X | 1 | 2 | ~ | Black holes LIGO/Virgo domination and single-lined binaries with a black hole candidate component. | LIPUNOV V., GORBOVSKOY E., GRINSHPUN V., et al. | ||
2021MNRAS.502.2049L | 654 | A | S X | 14 | 4 | ~ |
Hierarchical black hole mergers in multiple systems: constrain the formation of GW190412-, GW190814-, and GW190521-like events. |
LIU B. and LAI D. | |
2021MNRAS.502.2682A | 45 | X | 1 | 7 | ~ | Formation of supermassive black holes in galactic nuclei - I. Delivering seed intermediate-mass black holes in massive stellar clusters. | ASKAR A., DAVIES M.B. and CHURCH R.P. | ||
2021MNRAS.502.3879F | 314 | X C | 6 | 7 | ~ | Implications of recoil kicks for black hole mergers from LIGO/Virgo catalogs. | FRAGIONE G. and LOEB A. | ||
2021ApJ...908L..29G | 161 | A | X | 4 | 1 | ~ | Intermediate-mass black holes from high massive-star binary fractions in young star clusters. | GONZALEZ E., KREMER K., CHATTERJEE S., et al. | |
2021ApJ...908L..34G | 1595 | T A | X C | 34 | 3 | ~ |
Measuring the Hubble constant with GW190521 as an eccentric black hole merger and its potential electromagnetic counterpart. |
GAYATHRI V., HEALY J., LANGE J., et al. | |
2021ApJ...908..194T | 1012 | A | X C | 22 | 7 | ~ | Mass-gap mergers in active galactic nuclei. | TAGAWA H., KOCSIS B., HAIMAN Z., et al. | |
2021ApJ...908..215Y | 90 | C | 2 | 3 | ~ | Standard-siren cosmology using gravitational waves from binary black holes. | YOU Z.-Q., ZHU X.-J., ASHTON G., et al. | ||
2021ApJ...909L..23E | 90 | X | 2 | 2 | ~ | Jumping the gap: searching for LIGO's biggest black holes. | EZQUIAGA J.M. and HOLZ D.E. | ||
2021ApJ...909L..24H | 1326 | T A | X C | 28 | 1 | ~ |
Dynamical formation scenarios for GW190521 and prospects for decihertz gravitational-wave astronomy with GW190521-like binaries. |
HOLGADO A.M., ORTEGA A. and RODRIGUEZ C.L. | |
2021ApJ...909..126K | 90 | X | 2 | 18 | ~ | Swift follow-up observations of gravitational-wave and high-energy neutrino coincident signals. | KEIVANI A., KENNEA J.A., EVANS P.A., et al. | ||
2021A&A...647A.153B | 314 | X C | 6 | 6 | ~ | The impact of mass-transfer physics on the observable properties of field binary black hole populations. | BAVERA S.S., FRAGOS T., ZEVIN M., et al. | ||
2021ApJ...910...30T | 538 | X | 12 | 3 | ~ | Merger rate density of Population III binary black holes below, above, and in the pair-instability mass gap. | TANIKAWA A., SUSA H., YOSHIDA T., et al. | ||
2021ApJ...910...94C | 45 | X | 1 | 4 | ~ | Stellar evolution in AGN disks. | CANTIELLO M., JERMYN A.S. and LIN D.N.C. | ||
2021ApJ...910..152Z | 134 | X C | 2 | 4 | ~ | One channel to rule them all? Constraining the origins of binary black holes using multiple formation pathways. | ZEVIN M., BAVERA S.S., BERRY C.P.L., et al. | ||
2021MNRAS.503.1688H | 45 | X | 1 | 8 | ~ | 2MASX J00423991 + 3017515: an offset active galactic nucleus in an interacting system. | HOGG J.D., BLECHA L., REYNOLDS C.S., et al. | ||
2021MNRAS.503.2882B | 564 | A | X | 13 | 5 | ~ | Unexpected LIGO events and the mirror world. | BERADZE R. and GOGBERASHVILI M. | |
2021MNRAS.503.3371B | 45 | X | 1 | 3 | ~ | Stellar-mass black holes in young massive and open stellar clusters - V. comparisons with LIGO-Virgo merger rate densities. | BANERJEE S. | ||
2021ApJ...911L..14W | 90 | X | 2 | 2 | ~ | Accretion-modified stars in accretion disks of active galactic nuclei: slowly transient appearance. | WANG J.-M., LIU J.-R., HO L.C., et al. | ||
2021ApJ...911....6I | 45 | X | 1 | 3 | ~ | Mass ejection in failed supernovae: equation of state and neutrino loss dependence. | IVANOV M. and FERNANDEZ R. | ||
2021ApJ...911..104K | 45 | X | 1 | 8 | ~ | Fast Optical Transients from stellar-mass black hole tidal disruption events in young star clusters. | KREMER K., LU W., PIRO A.L., et al. | ||
2021MNRAS.504..146V | 340 | A | X | 8 | 4 | ~ | Maximum black hole mass across cosmic time. | VINK J.S., HIGGINS E.R., SANDER A.A.C., et al. | |
2021ApJS..253...55H | 45 | X | 1 | 2 | ~ | An energy-conserving integrator for conservative Hamiltonian systems with ten-dimensional phase space. | HU S., WU X. and LIANG E. | ||
2021ApJ...912L..31W | 45 | X | 1 | 3 | ~ | The pair-instability mass gap for black holes. | WOOSLEY S.E. and HEGER A. | ||
2021ApJ...912...98F | 448 | S X | 9 | 1 | ~ | When are LIGO/Virgo's big black hole mergers? | FISHBACH M., DOCTOR Z., CALLISTER T., et al. | ||
2021ApJ...912..128P | 332 | D | S X | 7 | 41 | ~ | Searches After Gravitational waves Using ARizona Observatories (SAGUARO): observations and analysis from Advanced LIGO/Virgo's third observing run. | PATERSON K., LUNDQUIST M.J., RASTINEJAD J.C., et al. | |
2021ApJ...912..132K | 45 | X | 1 | 6 | ~ | Accretion-induced black hole spin-up revised by numerical general relativistic MHD. | KROL D.L. and JANIUK A. | ||
2021A&A...649A..72D ![]() |
90 | X | 2 | 11 | ~ | GW190814 follow-up with the optical telescope MeerLICHT. | DE WET S., GROOT P.J., BLOEMEN S., et al. | ||
2021ApJ...913L...5N | 90 | C | 1 | 1 | ~ | Probing multiple populations of compact binaries with third-generation gravitational-wave detectors. | NG K.K.Y., VITALE S., FARR W.M., et al. | ||
2021ApJ...913L...7A | 1568 | A | D | S X C | 34 | 50 | ~ | Population properties of compact objects from the second LIGO-Virgo Gravitational-Wave Transient Catalog. | ABBOTT R., ABBOTT T.D., ABRAHAM S., et al. |
2021ApJ...913...42W | 134 | X | 3 | 3 | ~ | Black hole mass function of coalescing binary black hole systems: is there a pulsational pair-instability mass cutoff? | WANG Y.-Z., TANG S.-P., LIANG Y.-F., et al. | ||
2021ApJ...913L..19T | 224 | X C | 4 | 9 | ~ | The emergence of structure in the binary black hole mass distribution. | TIWARI V. and FAIRHURST S. | ||
2021ApJ...913L..23E | 1192 | A | X C | 26 | 4 | ~ | Poking holes: looking for gaps in LIGO/Virgo's black hole population. | EDELMAN B., DOCTOR Z. and FARR B. | |
2021ApJ...913L..29F | 90 | X | 2 | 2 | ~ | Binary black hole mergers from young massive and open clusters: comparison to GWTC-2 gravitational wave data. | FRAGIONE G. and BANERJEE S. | ||
2021ApJ...914L..18D | 179 | X C | 3 | 1 | ~ | Black hole leftovers: the remnant population from binary black hole mergers. | DOCTOR Z., FARR B. and HOLZ D.E. | ||
2021ApJ...914L..19Z | 45 | X | 1 | 2 | ~ | Thermonuclear explosions and accretion-induced collapses of white dwarfs in active galactic nucleus accretion disks. | ZHU J.-P., YANG Y.-P., ZHANG B., et al. | ||
2021ApJ...914...63W | 45 | X | 1 | 3 | ~ | Construction of explicit symplectic integrators in general relativity. IV. Kerr black holes. | WU X., WANG Y., SUN W., et al. | ||
2021ApJ...914L..34P | 1478 | T A | D | S X C | 31 | 6 | ~ |
Do LIGO/Virgo black hole mergers produce AGN flares? The case of GW190521 and prospects for reaching a confident association. |
PALMESE A., FISHBACH M., BURKE C.J., et al. |
2021ApJ...914..105J | 134 | X | 3 | 1 | ~ | Stellar evolution in the disks of active galactic nuclei produces rapidly rotating massive stars. | JERMYN A.S., DITTMANN A.J., CANTIELLO M., et al. | ||
2021MNRAS.505..339M | 1075 | A | D | S X C F | 22 | 1 | ~ | Hierarchical black hole mergers in young, globular and nuclear star clusters: the effect of metallicity, spin and cluster properties. | MAPELLI M., DALL'AMICO M., BOUFFANAIS Y., et al. |
2021MNRAS.505..663R | 45 | X | 1 | 17 | ~ | Chemically homogeneous evolution: a rapid population synthesis approach. | RILEY J., MANDEL I., MARCHANT P., et al. | ||
2021MNRAS.505.1324P | 224 | X | 5 | 2 | ~ | The last migration trap of compact objects in AGN accretion disc. | PENG P. and CHEN X. | ||
2021MNRAS.505.2170T | 1971 | T A | D | X C F | 42 | 4 | ~ |
Population III binary black holes: effects of convective overshooting on formation of GW190521. |
TANIKAWA A., KINUGAWA T., YOSHIDA T., et al. |
2021A&A...650A.189A | 45 | X | 1 | 3 | ~ | Order in the chaos. Eccentric black hole binary mergers in triples formed via strong binary-binary scatterings. | ARCA SEDDA M., LI G. and KOCSIS B. | ||
2021MNRAS.505.3681S | 45 | X | 1 | 2 | ~ | The mass-ratio distribution of tertiary-induced binary black hole mergers. | SU Y., LIU B. and LAI D. | ||
2021MNRAS.505.3873B | 403 | X C | 8 | 6 | ~ | Constraining accretion efficiency in massive binary stars with LIGO -Virgo black holes. | BOUFFANAIS Y., MAPELLI M., SANTOLIQUIDO F., et al. | ||
2021MNRAS.505.4874H | 134 | X | 3 | 6 | ~ | Evolution of Wolf-Rayet stars as black hole progenitors. | HIGGINS E.R., SANDER A.A.C., VINK J.S., et al. | ||
2021ApJ...915...54N | 45 | X | 1 | 3 | ~ | Search for gravitational waves from the coalescence of subsolar mass and eccentric compact binaries. | NITZ A.H. and WANG Y.-F. | ||
2021ApJ...915...56G | 224 | X C | 4 | 2 | ~ | High mass but low spin: an exclusion region to rule out hierarchical black hole mergers as a mechanism to populate the pair-instability mass gap. | GEROSA D., GIACOBBO N. and VECCHIO A. | ||
2021ApJ...915L..35K | 744 | A | X C | 16 | 9 | ~ | Evidence for hierarchical black hole mergers in the second LIGO-Virgo gravitational wave catalog. | KIMBALL C., TALBOT C., BERRY C.P.L., et al. | |
2021ApJ...916...47K ![]() |
45 | X | 1 | 94 | ~ | GECKO optical follow-up observation of three binary black hole merger events: GW190408_181802, GW190412, and GW190503_185404. | KIM J., IM M., PAEK G.S.H., et al. | ||
2021ApJ...916L..16B | 1658 | A | D | X C | 37 | 7 | ~ | Find the gap: black hole population analysis with an astrophysically motivated mass function. | BAXTER E.J., CROON D., McDERMOTT S.D., et al. |
2021ApJ...916L..17W | 385 | A | S X | 8 | 2 | ~ | Accretion-modified stars in accretion disks of active galactic nuclei: gravitational-wave bursts and electromagnetic counterparts from merging stellar black hole binaries. | WANG J.-M., LIU J.-R., HO L.C., et al. | |
2021ApJ...916..111K | 448 | X C | 9 | 3 | ~ | Outflow bubbles from compact binary mergers embedded in active galactic nuclei: cavity formation and the impact on electromagnetic counterparts. | KIMURA S.S., MURASE K. and BARTOS I. | ||
2021ApJ...917...33L | 45 | X | 1 | 6 | ~ | A flexible Gaussian process reconstruction method and the mass function of the coalescing binary black hole systems. | LI Y.-J., WANG Y.-Z., HAN M.-Z., et al. | ||
2021A&A...651A.100O | 45 | X | 1 | 3 | ~ | Impact of common envelope development criteria on the formation of LIGO/Virgo sources. | OLEJAK A., BELCZYNSKI K. and IVANOVA N. | ||
2021ApJ...918L..31M | 197 | D | X | 5 | 42 | ~ | Remnant black hole kicks and implications for hierarchical mergers. | MAHAPATRA P., GUPTA A., FAVATA M., et al. | |
2021ApJ...918...78A | 242 | D | X C | 5 | 8 | ~ | Search for neutrinos in coincidence with gravitational wave events from the LIGO-Virgo O3a observing run with the Super-Kamiokande detector. | ABE K., BRONNER C., HAYATO Y., et al. | |
2021A&A...652A..54A | 134 | X | 3 | 8 | ~ | Merging stellar and intermediate-mass black holes in dense clusters: implications for LIGO, LISA, and the next generation of gravitational wave detectors. | ARCA SEDDA M., AMARO-SEOANE P. and CHEN X. | ||
2021A&A...652A.137E | 45 | X | 1 | 4 | ~ | Grids of stellar models with rotation. VI. Models from 0.8 to 120 M☉ at a metallicity Z = 0.006. | EGGENBERGER P., EKSTROM S., GEORGY C., et al. | ||
2021MNRAS.506.1665G | 564 | A | X C | 12 | 3 | ~ | High eccentricities and high masses characterize gravitational-wave captures in galactic nuclei as seen by Earth-based detectors. | GONDAN L. and KOCSIS B. | |
2021MNRAS.506.5345H | 45 | X | 1 | 3 | ~ | First- and second-generation black hole and neutron star mergers in 2+2 quadruples: population statistics. | HAMERS A.S., FRAGIONE G., NEUNTEUFEL P., et al. | ||
2021MNRAS.506.5451L | 699 | A | X C | 15 | 7 | ~ | Gravitational waves from the remnants of the first stars in nuclear star clusters. | LIU B. and BROMM V. | |
2021MNRAS.507..743F | 45 | X | 1 | 4 | ~ | Outliers in the LIGO black hole mass function from coagulation in dense clusters. | FLITTER J., MUNOZ J.B. and KOVETZ E.D. | ||
2021MNRAS.507.1296O | 45 | X | 1 | 23 | ~ | Swift/UVOT follow-up of gravitational wave alerts in the O3 era. | OATES S.R., MARSHALL F.E., BREEVELD A.A., et al. | ||
2021MNRAS.507.3362T | 134 | X | 3 | 3 | ~ | Signatures of hierarchical mergers in black hole spin and mass distribution. | TAGAWA H., HAIMAN Z., BARTOS I., et al. | ||
2021MNRAS.507.3612R | 45 | X | 1 | 4 | ~ | Dynamics of binary black holes in low-mass young star clusters. | RASTELLO S., MAPELLI M., DI CARLO U.N., et al. | ||
2021MNRAS.507.4788G | 45 | X | 1 | 7 | ~ | Central kinematics of the Galactic globular cluster M80. | GOTTGENS F., KAMANN S., BAUMGARDT H., et al. | ||
2021MNRAS.507.5132D | 90 | X | 2 | 5 | ~ | Intermediate-mass black holes from stellar mergers in young star clusters. | DI CARLO U.N., MAPELLI M., PASQUATO M., et al. | ||
2021MNRAS.508.1253S | 45 | X | 1 | 2 | ~ | Lensing magnification: gravitational waves from coalescing stellar-mass binary black holes. | SHAN X., WEI C. and HU B. | ||
2021MNRAS.508.2169H | 45 | X | 1 | 7 | ~ | Detectability of Population III stellar remnants as X-ray binaries from tidal captures in the local Universe. | HUSAIN R., LIU B. and BROMM V. | ||
2021MNRAS.508.3045D | 3270 | T A | D | S X C | 71 | 2 | ~ |
GW190521 formation via three-body encounters in young massive star clusters. |
DALL'AMICO M., MAPELLI M., DI CARLO U.N., et al. |
2021MNRAS.508.3910C | 18 | D | 1 | 53 | ~ | Search for gamma-ray bursts and gravitational wave electromagnetic counterparts with High Energy X-ray Telescope of Insight-HXMT. | CAI C., XIONG S.L., LI C.K., et al. | ||
2021MNRAS.508.5028B | 45 | X | 1 | 8 | ~ | Impact of massive binary star and cosmic evolution on gravitational wave observations I: black hole-neutron star mergers. | BROEKGAARDEN F.S., BERGER E., NEIJSSEL C.J., et al. | ||
2021ApJ...920..128A | 1326 | A | S X | 29 | 2 | ~ |
Breaching the limit: formation of GW190521-like and IMBH mergers in young massive clusters. |
ARCA-SEDDA M., RIZZUTO F.P., NAAB T., et al. | |
2021ApJ...921L..15G | 45 | X | 1 | 7 | ~ | Building better spin models for merging binary black holes: evidence for nonspinning and rapidly spinning nearly aligned subpopulations. | GALAUDAGE S., TALBOT C., NAGAR T., et al. | ||
2021ApJ...921L..31R | 161 | A | X | 4 | 37 | ~ | Signs of eccentricity in two gravitational-wave signals may indicate a subpopulation of dynamically assembled binary black holes. | ROMERO-SHAW I., LASKY P.D. and THRANE E. | |
2021ApJ...921L..43Z | 179 | X C | 3 | 2 | ~ | Implications of eccentric observations on binary black hole formation channels. | ZEVIN M., ROMERO-SHAW I.M., KREMER K., et al. | ||
2021ApJ...921..131J | 45 | X | 1 | 81 | ~ | The observed mass distribution of Galactic black hole LMXBs is biased against massive black holes. | JONKER P.G., KAUR K., STONE N., et al. | ||
2021ApJ...922L...5C | 45 | X | 1 | 11 | ~ | Who ordered that? Unequal-mass binary black hole mergers have larger effective spins. | CALLISTER T.A., HASTER C.-J., NG K.K.Y., et al. | ||
2021ApJ...922...76N | 511 | D | S X | 11 | 58 | ~ | 3-OGC: catalog of gravitational waves from compact-binary mergers. | NITZ A.H., CAPANO C.D., KUMAR S., et al. | |
2022MNRAS.509.3772Y | 47 | X | 1 | 5 | ~ | Event rate predictions of strongly lensed gravitational waves with detector networks and more realistic templates. | YANG L., WU S., LIAO K., et al. | ||
2022MNRAS.509.3957Y | 47 | X | 1 | 8 | ~ | Optimized localization for gravitational waves from merging binaries. | YOU Z.-Q., ASHTON G., ZHU X.-J., et al. | ||
2021A&A...656A..47P | 45 | X | 1 | 1 | ~ | Contribution of flares from tidal disruptions of stars to high-redshift AGN. | PADMANABHAN H. and LOEB A. | ||
2022MNRAS.509.1919C | 47 | X | 1 | 5 | ~ | Relativistic effects on triple black holes: Burrau's problem revisited. | CHITAN A.S., MYLLARI A. and HAQUE S. | ||
2021ApJ...923...14A | 287 | D | X | 7 | 31 | ~ | Search for lensing signatures in the gravitational-wave observations from the first half of LIGO-Virgo's third observing run. | ABBOTT R., ABBOTT T.D., ABRAHAM S., et al. | |
2021ApJ...923..139Z | 206 | A | X | 5 | 2 | ~ | The eccentric and accelerating stellar binary black hole mergers in galactic nuclei: observing in ground and space gravitational-wave observatories. | ZHANG F., CHEN X., SHAO L., et al. | |
2021ApJ...923..173P | 340 | A | S X | 7 | 2 | ~ | Supercritical accretion of (stellar-mass) compact objects in active galactic nuclei. | PAN Z. and YANG H. | |
2021ApJ...923..219W | 45 | X | 1 | 7 | ~ | R-process radioisotopes from near-earth supernovae and kilonovae. | WANG X., CLARK A.M., ELLIS J., et al. | ||
2021ApJ...923..246G | 45 | X | 1 | 86 | ~ | Central X-ray point sources found to be abundant in low-mass, late-type galaxies predicted to contain an intermediate-mass black hole. | GRAHAM A.W., SORIA R., DAVIS B.L., et al. | ||
2021ApJ...923..258K | 90 | X | 2 | 30 | ~ | The gravity collective: a search for the electromagnetic counterpart to the neutron star-black hole merger GW190814. | KILPATRICK C.D., COULTER D.A., ARCAVI I., et al. | ||
2022ApJ...924...39M | 1241 | A | S X C | 25 | 1 | ~ | Observing intermediate-mass black holes and the upper stellar-mass gap with LIGO and Virgo. | MEHTA A.K., BUONANNO A., GAIR J., et al. | |
2022ApJ...924...79E | 1567 | T A | X C | 32 | 4 | ~ |
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2022ApJ...924..101E | 140 | X | 3 | 1 | ~ | Ain't no mountain high enough: semiparametric modeling of LIGO-Virgo's binary black hole mass distribution. | EDELMAN B., DOCTOR Z., GODFREY J., et al. | ||
2022ApJ...924..129Q | 159 | D | X | 4 | 58 | ~ | On the angular momentum transport efficiency within the star constrained from gravitational-wave observations. | QIN Y., WANG Y.-Z., WU D.-H., et al. | |
2022A&A...657L...8B | 112 | D | C | 2 | 15 | ~ | Probing the progenitors of spinning binary black-hole mergers with long gamma-ray bursts. | BAVERA S.S., FRAGOS T., ZAPARTAS E., et al. | |
2022ApJ...925...69B | 140 | X | 3 | 16 | ~ | The Uncertain Future of Massive Binaries Obscures the Origin of LIGO/Virgo Sources. | BELCZYNSKI K., ROMAGNOLO A., OLEJAK A., et al. | ||
2022ApJ...926...34E | 1288 | A | S X C | 26 | 4 | ~ | Probing Extremal Gravitational-wave Events with Coarse-grained Likelihoods. | ESSICK R., FARAH A., GALAUDAGE S., et al. | |
2022ApJ...926...83T | 280 | X | 6 | 9 | ~ | Merger Rate Density of Binary Black Holes through Isolated Population I, II, III and Extremely Metal-poor Binary Star Evolution. | TANIKAWA A., YOSHIDA T., KINUGAWA T., et al. | ||
2022MNRAS.511.2782C | 93 | X | 2 | 3 | ~ | Mapping the cosmic expansion history from LIGO-Virgo-KAGRA in synergy with DESI and SPHEREx. | CIGARRAN DIAZ C. and MUKHERJEE S. | ||
2022ApJ...926L..32S | 47 | X | 1 | 3 | ~ | Biases in Estimates of Black Hole Kicks from the Spin Distribution of Binary Black Holes. | STEVENSON S. | ||
2022ApJ...926..205C | 47 | X | 1 | 5 | ~ | Exploring the High-redshift PBH-ΛCDM Universe: Early Black Hole Seeding, the First Stars and Cosmic Radiation Backgrounds. | CAPPELLUTI N., HASINGER G. and NATARAJAN P. | ||
2022ApJ...927...41T | 93 | X | 2 | 3 | ~ | Can Stellar-mass Black Hole Growth Disrupt Disks of Active Galactic Nuclei? The Role of Mechanical Feedback. | TAGAWA H., KIMURA S.S., HAIMAN Z., et al. | ||
2022MNRAS.511.5797M | 187 | X C | 3 | 4 | ~ | The cosmic evolution of binary black holes in young, globular, and nuclear star clusters: rates, masses, spins, and mixing fractions. | MAPELLI M., BOUFFANAIS Y., SANTOLIQUIDO F., et al. | ||
2022ApJS..258...22R | 401 | A | S X C | 7 | 1 | ~ | Modeling Dense Star Clusters in the Milky Way and beyond with the Cluster Monte Carlo Code. | RODRIGUEZ C.L., WEATHERFORD N.C., COUGHLIN S.C., et al. | |
2022MNRAS.512..884R | 980 | X C F | 19 | 5 | ~ | Black hole mergers in compact star clusters and massive black hole formation beyond the mass gap. | RIZZUTO F.P., NAAB T., SPURZEM R., et al. | ||
2022A&A...659A..84A | 1306 | A | D | S X C | 27 | 23 | ~ | Search for intermediate-mass black hole binaries in the third observing run of Advanced LIGO and Advanced Virgo. | ABBOTT R., ABBOTT T.D., ACERNESE F., et al. |
2022A&A...659A..97F | 47 | X | 1 | 3 | ~ | Relativistic Coulomb screening in pulsational pair instability supernovae. | FAMIANO M.A., MORI K., BALANTEKIN A.B., et al. | ||
2022A&A...659A.188B ![]() |
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2022ApJ...927..231F | 467 | X C | 9 | 1 | ~ | Repeated Mergers, Mass-gap Black Holes, and Formation of Intermediate-mass Black Holes in Dense Massive Star Clusters. | FRAGIONE G., KOCSIS B., RASIO F.A., et al. | ||
2022ApJ...928L...1L | 47 | X | 1 | 1 | ~ | Spin Evolution of Stellar-mass Black Holes Embedded in AGN Disks: Orbital Eccentricity Produces Retrograde Circumstellar Flows. | LI Y.-P., CHEN Y.-X., LIN D.N.C., et al. | ||
2022ApJ...928...21K | 233 | X C | 4 | 2 | ~ | Prospects for Measuring Off-axis Spins of Binary Black Holes with Plus-era Gravitational-wave Detectors. | KNEE A.M., McIVER J. and CABERO M. | ||
2022ApJ...928...75H | 373 | X F | 7 | 48 | ~ | Understanding How Fast Black Holes Spin by Analyzing Data from the Second Gravitational-wave Catalogue. | HOY C., FAIRHURST S., HANNAM M., et al. | ||
2022ApJ...928L..19L | 47 | X | 1 | 1 | ~ | Hot Circumsingle Disks Drive Binary Black Hole Mergers in Active Galactic Nucleus Disks. | LI Y.-P., DEMPSEY A.M., LI H., et al. | ||
2022ApJ...928..191G | 93 | X | 2 | 1 | ~ | Feedback-dominated Accretion Flows. | GILBAUM S. and STONE N.C. | ||
2022ApJ...929L...1B | 1381 | T A | X C | 28 | 1 | ~ |
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2022NatAs...6..344G | 868 | A | X C | 18 | 3 | ~ | Eccentricity estimate for black hole mergers with numerical relativity simulations. | GAYATHRI V., HEALY J., LANGE J., et al. | |
2022ApJ...925..178H | 47 | X | 1 | 1 | ~ | Return of the TEDI: Revisiting the Triple Evolution Dynamical Instability Channel in Triple Stars. | HAMERS A.S., PERETS H.B., THOMPSON T.A., et al. | ||
2022A&A...660A..26B | 93 | X | 2 | 7 | ~ | Stochastic gravitational-wave background as a tool for investigating multi-channel astrophysical and primordial black-hole mergers. | BAVERA S.S., FRANCIOLINI G., CUSIN G., et al. | ||
2022Natur.603..237S | 261 | A | X | 6 | 1 | ~ | AGN as potential factories for eccentric black hole mergers. | SAMSING J., BARTOS I., D’ORAZIO D.J., et al. | |
2022MNRAS.513.2152C | 1428 | T A | X C F | 28 | 4 | ~ |
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2022ApJ...929L..22R | 47 | X | 1 | 5 | ~ | The Formation of Intermediate-mass Black Holes in Galactic Nuclei. | ROSE S.C., NAOZ S., SARI R., et al. | ||
2022ApJ...929..123E | 47 | X | 1 | 34 | ~ | Abundance of LIGO/Virgo Black Holes from Microlensing Observations of Quasars with Reverberation Mapping Size Estimates. | ESTEBAN-GUTIERREZ A., AGUES-PASZKOWSKY N., MEDIAVILLA E., et al. | ||
2022MNRAS.513.4527C | 140 | X | 3 | 15 | ~ | Dynamical double black holes and their host cluster properties. | CHATTOPADHYAY D., HURLEY J., STEVENSON S., et al. | ||
2022ApJ...930...13S | 47 | X | 1 | 4 | ~ | Wave-optical Effects in the Microlensing of Continuous Gravitational Waves by Star Clusters. | SUVOROV A.G. | ||
2022ApJ...930...45S | 47 | X | 1 | 11 | ~ | Searches for Modulated γ-Ray Precursors to Compact Binary Mergers in Fermi-GBM Data. | STACHIE C., DAL CANTON T., CHRISTENSEN N., et al. | ||
2022ApJ...930..139Z | 65 | D | X | 2 | 68 | ~ | Search for the Birefringence of Gravitational Waves with the Third Observing Run of Advanced LIGO-Virgo. | ZHAO Z.-C., CAO Z. and WANG S. | |
2022ApJ...931....2S | 47 | X | 1 | 4 | ~ | Establishing the Nonprimordial Origin of Black Hole-Neutron Star Mergers. | SASAKI M., TAKHISTOV V., VARDANYAN V., et al. | ||
2022PASJ...74..521T | 47 | X | 1 | 2 | ~ | Can Population III stars be major origins of both merging binary black holes and extremely metal poor stars?. | TANIKAWA A., CHIAKI G., KINUGAWA T., et al. | ||
2022ApJS..260...18A | 93 | X | 2 | 7 | ~ | Target-of-opportunity Observations of Gravitational-wave Events with Vera C. Rubin Observatory. | ANDREONI I., MARGUTTI R., SALAFIA O.S., et al. | ||
2022ApJ...931...79P | 467 | X C | 9 | 4 | ~ | The Imprint of Superradiance on Hierarchical Black Hole Mergers. | PAYNE E., SUN L., KREMER K., et al. | ||
2022ApJ...931...82V | 28 | A | 1 | 2 | ~ | Measuring the Properties of Active Galactic Nuclei Disks with Gravitational Waves. | VAJPEYI A., THRANE E., SMITH R., et al. | ||
2022ApJ...931..157A | 47 | X | 1 | 16 | ~ | WO-type Wolf-Rayet Stars: The Last Hurrah of Massive Star Evolution. | AADLAND E., MASSEY P., HILLIER D.J., et al. | ||
2022MNRAS.514.4669S | 47 | X | 1 | 7 | ~ | How many extragalactic stellar mass binary black holes will be detected by space gravitational-wave interferometers? | SETO N. and KYUTOKU K. | ||
2022MNRAS.514.5879M | 187 | X | 4 | 1 | ~ | MOCCA-SURVEY data base II - Properties of intermediate mass black holes escaping from star clusters. | MALISZEWSKI K., GIERSZ M., GONDEK-ROSINSKA D., et al. | ||
2022ApJ...932...80Y | 47 | X | 1 | 5 | ~ | GeV Signatures of Short Gamma-Ray Bursts in Active Galactic Nuclei. | YUAN C., MURASE K., GUETTA D., et al. | ||
2022ApJ...933...17A | 19 | D | 1 | 82 | ~ | Are Binary Black Hole Mergers and Long Gamma-Ray Bursts Drawn from the Same Black Hole Population? | ARCIER B. and ATTEIA J.-L. | ||
2022ApJ...933..170F | 47 | X | 1 | 1 | ~ | Merger Rates of Intermediate-mass Black Hole Binaries in Nuclear Star Clusters. | FRAGIONE G., LOEB A., KOCSIS B., et al. | ||
2022ApJ...934...44M | 47 | X | 1 | 2 | ~ | Extreme Eccentricities of Triple Systems: Analytic Results. | MANGIPUDI A., GRISHIN E., TRANI A.A., et al. | ||
2022MNRAS.515.4038T | 47 | X | 1 | 5 | ~ | MOCCA-SURVEY Database I: tidal disruption events of white dwarfs in globular clusters and young mass clusters. | TANIKAWA A., GIERSZ M. and ARCA SEDDA M. | ||
2022MNRAS.515.5106W | 187 | X | 4 | 22 | ~ | Gravitational wave of intermediate-mass black holes in Population III star clusters. | WANG L., TANIKAWA A. and FUJII M. | ||
2022MNRAS.515.5718V | 19 | D | 1 | 45 | ~ | Rapid source classification and distance estimation for compact binary mergers with PyCBC live. | VILLA-ORTEGA V., DENT T. and CURIEL BARROSO A. | ||
2022ApJ...934..132H | 47 | X | 1 | 3 | ~ | Long-term Evolution of Supercritical Black Hole Accretion with Outflows: A Subgrid Feedback Model for Cosmological Simulations. | HU H., INAYOSHI K., HAIMAN Z., et al. | ||
2022ApJ...934..154L | 47 | X | 1 | 1 | ~ | Long-term Evolution of Tightly Packed Stellar Black Holes in AGN Disks: Formation of Merging Black Hole Binaries via Close Encounters. | LI J., LAI D. and RODET L. | ||
2022MNRAS.516L.107Z | 187 | X | 4 | 5 | ~ | Gravitational-wave bursts from spin-precessing black holes in binary systems. | ZHANG C., HAN W.-B. and YANG S.-C. | ||
2022MNRAS.516.1072C | 75 | A | X | 2 | 1 | ~ | Formation of black holes in the pair-instability mass gap: Evolution of a post-collision star. | COSTA G., BALLONE A., MAPELLI M., et al. | |
2022MNRAS.516.1481L | 93 | X | 2 | 1 | ~ | Supermassive stars with random transverse magnetic fields. | LOU Y.-Q. and MA J.-Z. | ||
2022ApJ...936..172K | 420 | S X C | 7 | 2 | ~ | A Rosetta Stone for Eccentric Gravitational Waveform Models. | KNEE A.M., ROMERO-SHAW I.M., LASKY P.D., et al. | ||
2022MNRAS.516.3847G | 187 | X | 4 | 1 | ~ | Mimicking mergers: mistaking black hole captures as mergers. | GUO W., WILLIAMS D., HENG I.S., et al. | ||
2022MNRAS.516.2736B | 47 | X | 1 | 11 | ~ | Dwarf AGNs from Optical Variability for the Origins of Seeds (DAVOS): insights from the dark energy survey deep fields. | BURKE C.J., LIU X., SHEN Y., et al. | ||
2022A&A...665A..20B | 653 | A | D | X C | 14 | 4 | ~ | Binary black hole mergers from young massive clusters in the pair-instability supernova mass gap. | BANERJEE S. |
2022ApJ...937...79C | 47 | X | 1 | 6 | ~ | Multi-messenger Observations of Binary Neutron Star Mergers in the O4 Run. | COLOMBO A., SALAFIA O.S., GABRIELLI F., et al. | ||
2022ApJ...937..112F | 47 | X | 1 | 5 | ~ | Resolving the Peak of the Black Hole Mass Spectrum. | FARAG E., RENZO M., FARMER R., et al. | ||
2022ApJ...938...45B | 47 | X | 1 | 11 | ~ | Signatures of Mass Ratio Reversal in Gravitational Waves from Merging Binary Black Holes. | BROEKGAARDEN F.S., STEVENSON S. and THRANE E. | ||
2022ApJ...938...69P | 47 | X | 1 | 6 | ~ | On the Mass Function of GWTC-2 Binary Black Hole Systems and Their Progenitors. | PARK H.-J., KIM S.-J., KIM S., et al. | ||
2022MNRAS.516.5309V | 47 | X | 1 | 12 | ~ | A follow-up on intermediate-mass black hole candidates in the second LIGO-Virgo observing run with the Bayes Coherence Ratio. | VAJPEYI A., SMITH R., THRANE E., et al. | ||
2022ApJ...938L..18L | 47 | X | 1 | 4 | ~ | Prompt Emission of γ-Ray Bursts in the High-density Environment of Active Galactic Nucleus Accretion Disks. | LAZZATI D., SOARES G. and PERNA R. | ||
2022ApJ...938..157K | 19 | D | 2 | 47 | ~ | Deep Learning-based Search for Microlensing Signature from Binary Black Hole Events in GWTC-1 and -2. | KIM K., LEE J., HANNUKSELA O.A., et al. | ||
2022MNRAS.517.1339G | 93 | X | 2 | 4 | ~ | The imprint of gas on gravitational waves from LISA intermediate-mass black hole binaries. | GARG M., DERDZINSKI A., ZWICK L., et al. | ||
2022MNRAS.517L...1T | 47 | X | 1 | 3 | ~ | Impacts of Jets and winds from primordial black holes. | TAKHISTOV V., LU P., MURASE K., et al. | ||
2022MNRAS.517.1602L | 47 | X | 1 | 2 | ~ | Hydrodynamical evolution of black-hole binaries embedded in AGN discs. | LI R. and LAI D. | ||
2022MNRAS.517.2403M | 327 | X C | 6 | 12 | ~ | Parameter estimation with the current generation of phenomenological waveform models applied to the black hole mergers of GWTC-1. | MATEU-LUCENA M., HUSA S., COLLEONI M., et al. | ||
2022MNRAS.517.4034S | 140 | X | 3 | 8 | ~ | Constraints on the contributions to the observed binary black hole population from individual evolutionary pathways in isolated binary evolution. | STEVENSON S. and CLARKE T.A. | ||
2022A&A...666A.194L | 47 | X | 1 | 2 | ~ | Constraining hierarchical mergers of binary black holes detectable with LIGO-Virgo. | LI G.-P. | ||
2022Natur.610..652H | 47 | X | 1 | 5 | ~ | General-relativistic precession in a black-hole binary. | HANNAM M., HOY C., THOMPSON J.E., et al. | ||
2022ApJ...940...17C | 93 | X | 2 | 3 | ~ | Constraining the Origin of Stellar Binary Black Hole Mergers by Detections of Their Lensed Host Galaxies and Gravitational Wave Signals. | CHEN Z., LU Y. and ZHAO Y. | ||
2022ApJ...940L..44R | 47 | X | 1 | 3 | ~ | Interacting Kilonovae: Long-lasting Electromagnetic Counterparts to Binary Mergers in the Accretion Disks of Active Galactic Nuclei. | REN J., CHEN K., WANG Y., et al. | ||
2022ApJ...940..131G | 121 | A | X | 3 | 1 | ~ | Intermediate-mass Black Holes on the Run from Young Star Clusters. | GONZALEZ PRIETO E., KREMER K., FRAGIONE G., et al. | |
2022ApJ...940..155D | 47 | X | 1 | 2 | ~ | Contracting and Expanding Binary Black Holes in 3D Low-mass AGN Disks: The Importance of Separation. | DEMPSEY A.M., LI H., MISHRA B., et al. | ||
2022ApJ...940..171R | 672 | D | X C | 14 | 46 | ~ | Four Eccentric Mergers Increase the Evidence that LIGO-Virgo-KAGRA's Binary Black Holes Form Dynamically. | ROMERO-SHAW I., LASKY P.D. and THRANE E. | |
2022ApJ...941....4A | 774 | T A | X | 16 | 2 | ~ |
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2022ApJ...941..100S | 1381 | A | S X C | 28 | 8 | ~ | “Super-kilonovae” from Massive Collapsars as Signatures of Black Hole Birth in the Pair-instability Mass Gap. | SIEGEL D.M., AGARWAL A., BARNES J., et al. | |
2022ApJ...941..179Q | 47 | X | 1 | 32 | ~ | Searching for Candidates of Coalescing Binary Black Holes Formed through Chemically Homogeneous Evolution in GWTC-3. | QIN Y., WANG Y.-Z., BAVERA S.S., et al. | ||
2022ApJ...941..208I | 93 | C | 2 | 8 | ~ | Forecasting the Detection Capabilities of Third-generation Gravitational-wave Detectors Using GWFAST. | IACOVELLI F., MANCARELLA M., FOFFA S., et al. | ||
2022ApJ...941L..39W | 252 | D | X | 6 | 69 | ~ | Potential Subpopulations and Assembling Tendency of the Merging Black Holes. | WANG Y.-Z., LI Y.-J., VINK J.S., et al. | |
2023ApJ...942...99G | 270 | D | X | 6 | 92 | ~ | A Light in the Dark: Searching for Electromagnetic Counterparts to Black Hole-Black Hole Mergers in LIGO/Virgo O3 with the Zwicky Transient Facility. | GRAHAM M.J., McKERNAN B., FORD K.E.S., et al. | |
2023ApJ...943...56P | 50 | X | 1 | 9 | ~ | A Standard Siren Measurement of the Hubble Constant Using Gravitational-wave Events from the First Three LIGO/Virgo Observing Runs and the DESI Legacy Survey. | PALMESE A., BOM C.R., MUCESH S., et al. | ||
2023ApJ...944...40V | 80 | A | X | 2 | 2 | ~ | A Study of Primordial Very Massive Star Evolution. | VOLPATO G., MARIGO P., COSTA G., et al. | |
2023ApJ...944...44K | 350 | X | 7 | 2 | ~ | The Hydrodynamic Evolution of Binary Black Holes Embedded within the Vertically Stratified Disks of Active Galactic Nuclei. | KAAZ N., SCHRODER S.L., ANDREWS J.J., et al. | ||
2023ApJ...944...80A | 350 | A | D | X | 8 | 82 | ~ | IceCube Search for Neutrinos Coincident with Gravitational Wave Events from LIGO/Virgo Run O3. | ABBASI R., ACKERMANN M., ADAMS J., et al. |
2022MNRAS.516.5737B | 93 | X | 2 | 11 | ~ | Impact of massive binary star and cosmic evolution on gravitational wave observations - II. Double compact object rates and properties. | BROEKGAARDEN F.S., BERGER E., STEVENSON S., et al. | ||
2022MNRAS.517.2953T | 47 | X | 1 | 6 | ~ | Dynamics of binary black holes in young star clusters: the impact of cluster mass and long-term evolution. | TORNIAMENTI S., RASTELLO S., MAPELLI M., et al. |
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