2022ApJ...929L..26F


Query : 2022ApJ...929L..26F

2022ApJ...929L..26F - Astrophys. J., 929, L26-L26 (2022/April-3)

Apples and Oranges: Comparing Black Holes in X-Ray Binaries and Gravitational-wave Sources.

FISHBACH M. and KALOGERA V.

Abstract (from CDS):

The component black holes (BHs) observed in gravitational-wave (GW) binary black hole (BBH) events tend to be more massive and slower spinning than those observed in black hole X-ray binaries (BH-XRBs). Without modeling their evolutionary histories, we investigate whether these apparent tensions in the BH populations can be explained by GW observational selection effects alone. We find that this is indeed the case for the discrepancy between BH masses in BBHs and the observed high-mass X-ray binaries (HMXBs), when we account for statistical uncertainty from the small sample size of just three HMXBs. On the other hand, the BHs in observed low-mass X-ray binaries (LMXBs) are significantly lighter than the astrophysical BBH population, but this may just be due to a correlation between component masses in a binary system. Given their light stellar companions, we expect light BHs in LMXBs. The observed spins in HMXBs and LMXBs, however, are in tension with the inferred BBH spin distribution at the >99.9% level. We discuss possible scenarios behind the significantly larger spins in observed BH-XRBs. One possibility is that a small subpopulation (conservatively <30%) of BBHs have rapidly spinning primary components, indicating that they may have followed a similar evolutionary pathway to the observed HMXBs. In LMXBs, it has been suggested that BHs can spin up by accretion. If LMXB natal spins follow the BBH spin distribution, we find LMXBs must gain an average dimensionless spin of {0.47}_{-0.11}^{+0.10}, but if their natal spins follow the observed HMXB spins, the average spin-up must be <0.03.

Abstract Copyright: © 2022. The Author(s). Published by the American Astronomical Society.

Journal keyword(s): Astrostatistics - Stellar mass black holes - X-ray binary stars - Gravitational wave astronomy

Simbad objects: 38

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Number of rows : 38
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 CXOU J002029.1+591651 HXB 00 20 29.09 +59 16 51.9           ~ 170 0
2 CXOU J005510.0-374212 HXB 00 55 09.990 -37 42 12.16     22.44     WNE 126 1
3 NAME M33 X-7 HXB 01 33 34.13 +30 32 11.3 17.50 18.80 18.70     O 164 2
4 V* V518 Per HXB 04 21 42.7227473352 +32 54 26.939156184 13.00 13.50 13.2     M4.5V 651 1
5 X LMC X-3 HXB 05 38 56.6323605504 -64 05 03.317937504   17 17.2     B2.5Ve 675 0
6 X LMC X-1 HXB 05 39 38.8284304464 -69 44 35.531553624   14.8 14.5     O8(f)p 640 2
7 1A 0620-00 HXB 06 22 44.5423857312 -00 20 44.290460544 10.60 11.40 11.2     K3V-K7V 1113 0
8 V* MM Vel HXB 10 13 36.4108035720 -45 04 32.553865524   14.84 14.71     G5V-M0V 198 0
9 V* KV UMa HXB 11 18 10.7930420496 +48 02 12.314730120     12.25     K5V-M1V 822 0
10 V* GU Mus HXB 11 26 26.5961559600 -68 40 32.877752952           K3V-K7V 715 1
11 CRTS J135716.8-093238 HXB 13 57 16.8357790008 -09 32 38.796487512           M4.5V 169 0
12 V* BW Cir HXB 13 58 09.700 -64 44 05.80 17.90 18.00 16.9     ~ 237 1
13 V* IL Lup HXB 15 47 08.2768672752 -47 40 10.284587760     11.96     ~ 493 1
14 V* V381 Nor HXB 15 50 58.6637920704 -56 28 35.258385000   17.95 16.6     K3III 1172 0
15 X Nor X-1 LXB 16 34 01.610 -47 23 34.80           ~ 516 0
16 [GHJ2008] 3 HXB 16 50 00.980 -49 57 43.60     11.89     K4V 397 0
17 XTE J1652-453 XB* 16 52 20.330 -45 20 39.99           ~ 50 1
18 V* V1033 Sco HXB 16 54 00.137 -39 50 44.90   15.20 14.2 16.14   F5IV 1886 1
19 V* V821 Ara HXB 17 02 49.3876391280 -48 47 23.087954544 16.20 16.30 15.5     ~ 2078 0
20 V* V2107 Oph HXB 17 08 14.520 -25 05 30.15   16.50 15.9     K3V-K7V 226 1
21 SAX J1711.6-3808 XB* 17 11 37.1 -38 07 06           ~ 43 0
22 V* V2293 Oph LXB 17 19 36.9201835128 -25 01 04.121601456   17.55 16.65     ~ 190 0
23 XTE J1752-223 LXB 17 52 15.090 -22 20 32.36           ~ 209 0
24 2MAXI J1753-013 LXB 17 53 28.2898766424 -01 27 06.256555272 15.30 16.73 16.46 16.15 15.64 ~ 363 0
25 V* V4641 Sgr HXB 18 19 21.6343259256 -25 24 25.849595952     13.654   13.092 B9III 472 1
26 MAXI J1820+070 LXB 18 20 21.9423816480 +07 11 07.284859440           ~ 345 0
27 MAXI J1836-194 XB* 18 35 43.440 -19 19 10.48           ~ 143 0
28 EXO 1846-031 LXB 18 49 17.1 -03 03 44           ~ 94 0
29 V* V406 Vul HXB 18 58 41.580 +22 39 29.40 15.00 15.65 15.31     G5V-K0V 379 0
30 [KRL2007b] 353 HXB 19 08 53.080 +09 23 04.84     15.80     ~ 113 0
31 MAXI J1910-057 LXB 19 10 22.80 -05 47 55.9           ~ 73 0
32 Granat 1915+105 HXB 19 15 11.55576 +10 56 44.9052           ~ 2627 0
33 HD 226868 HXB 19 58 21.6757355952 +35 12 05.784512688 9.38 9.72 8.91 8.42   O9.7Iabpvar 4334 0
34 V* QZ Vul HXB 20 02 49.58 +25 14 11.3   19.64 18.2     K3V-K6V 421 0
35 V* V404 Cyg HXB 20 24 03.8254458776 +33 52 01.962185735           G9/K0III/V 1275 0
36 GrW 190412 GWE ~ ~           ~ 124 0
37 GrW 190517 055101 GWE ~ ~           ~ 42 0
38 GrW 151226 GWE ~ ~           ~ 257 1

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