2009ApJ...707..870B


Query : 2009ApJ...707..870B

2009ApJ...707..870B - Astrophys. J., 707, 870-877 (2009/December-3)

On the apparent lack of Be X-ray binaries with black holes.

BELCZYNSKI K. and ZIOLKOWSKI J.

Abstract (from CDS):

In our Galaxy there are 64 Be X-ray binaries known to date. Out of these, 42 host a neutron star (NS), and for the remainder the nature of the companion is unknown. None, so far, are known to host a black hole (BH). There seems to be no apparent mechanism that would prevent formation or detection of Be stars with BHs. This disparity is referred to as a missing Be-BH X-ray binary problem. We point out that current evolutionary scenarios that lead to the formation of Be X-ray binaries predict that the ratio of binaries with NSs to the ones with BHs is rather high, FNStoBH∼ 10-50, with the more likely formation models providing the values at the high end. The ratio is a natural outcome of (1) the stellar initial mass function that produces more NSs than BHs and (2) common envelope evolution (i.e., a major mechanism involved in the formation of interacting binaries) that naturally selects progenitors of Be X-ray binaries with NSs (binaries with comparable mass components have more likely survival probabilities) over ones with BHs (which are much more likely to be common envelope mergers). A comparison of this ratio (i.e., FNStoBH∼ 30) with the number of confirmed Be-NS X-ray binaries (42) indicates that the expected number of Be-BH X-ray binaries is of the order of only ∼0-2. This is entirely consistent with the observed Galactic sample.

Abstract Copyright:

Journal keyword(s): binaries: close - black hole physics - stars: evolution - stars: neutron

Simbad objects: 70

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Number of rows : 70
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 * gam Cas HXB 00 56 42.5310945 +60 43 00.264089 1.18 2.29 2.39 2.32 2.40 B0.5IVpe 1209 0
2 V* V635 Cas HXB 01 18 31.9704955824 +63 44 33.072603144 17.05 16.64 15.19 14.34 13.22 B0.2Ve 744 0
3 IGR J01363+6610 HXB 01 35 49.8564591384 +66 12 43.284919428   14.724 13.271 12.825 11.37 B1IV-Ve 35 0
4 EM* GGA 104 HXB 01 47 00.2124077208 +61 21 23.663788056 11.76 12.09 11.366 11.00 10.52 B1IIIe 191 0
5 IGR J01583+6713 HXB 01 58 18.4911998640 +67 13 23.459780244 15.74 15.672 14.400 13.44 12.55 B2IVe+ 33 0
6 LS I +61 303 HXB 02 40 31.6644419688 +61 13 45.593918580 11.27 11.61 10.75 10.19 9.55 B0Ve 853 2
7 NAME Magellanic Clouds GrG 03 00 -71.0           ~ 7067 0
8 V* BQ Cam HXB 03 34 59.9116110096 +53 10 23.296879776   17.16 15.42 14.26 13.04 O8.5Ve 478 1
9 V* X Per HXB 03 55 23.0777456088 +31 02 45.039836148 6.090 6.840 6.720     O9.5III 978 0
10 LS V +44 17 HXB 04 40 59.3296237272 +44 31 49.258049376 11.02 11.42 10.73 10.28 9.76 B0.2Ve 139 0
11 HD 34921 HXB 05 22 35.2313961840 +37 40 33.638562768 6.78 7.64 7.48     B0IVpe 133 0
12 HD 245770 HXB 05 38 54.5748918624 +26 18 56.836952784 9.30 9.84 9.39 8.77 8.30 O9/B0III/Ve 983 0
13 HD 249179 bC? 05 55 55.0408392960 +28 47 06.421864164   10.11 10.00     B5ne 41 1
14 IGR J06074+2205 HXB 06 07 26.6120621496 +22 05 47.759865432   12.85 12.21 11.80 11.32 B0.5Ve 53 1
15 EM* GGA 401 HXB 06 35 18.2797640568 +05 33 06.274961892   13.769 12.837 12.512   B1-2III-Ve 54 0
16 2E 1752 HXB 06 58 17.2878153600 -07 12 35.204283324   12.38 10.9 11.40   O9.7Ve 98 0
17 V* V441 Pup HXB 07 28 53.5788273168 -26 06 28.897118208 11.27 12.29 11.83 11.53   O5Ve 81 0
18 HD 63666 HXB 07 47 23.5848942480 -53 19 56.822589048   7.60 7.60     B7IV/V 36 0
19 1H 0749-600 HXB 07 50 14 -60 11.8           B8IIIe 13 0
20 V* V572 Pup HXB 08 12 28.3575205680 -31 14 52.138451400 12.14 13.03 12.74 12.44   B0.2IVe 70 0
21 Ginga 0834-430 HXB 08 35 54.9956514920 -43 11 17.497095048     20.4     B0-2III-Ve 104 0
22 GRO J1008-571 HXB 10 09 46.9642314696 -58 17 35.603851848       14.63   B0e 238 0
23 LS 1698 HXB 10 37 35.3145142200 -56 47 55.869594756   12.00 11.48 11.38   B0III/V:e 109 0
24 WRAY 15-793 HXB 11 20 57.1736884968 -61 55 00.166078020 12.81 13.06 12.12     O9.5III/Ve 208 0
25 IGR J11435-6109 HXB 11 44 00.2947782000 -61 07 36.483179736       15.70   B0.5Ve 59 1
26 HD 102567 HXB 11 48 00.0214464120 -62 12 24.902384760 8.24 9.06 9.00 9.62   B1Vne 319 0
27 HD 109857 Be* 12 39 14.57557 -75 22 14.1384 6.33         B8Vn 69 0
28 HD 110432 HXB 12 42 50.2663572384 -63 03 31.052981412 4.79 5.58 5.31     B0.5IVpe 311 0
29 * mu.02 Cru Be* 12 54 36.8841589536 -57 10 07.193918388 4.59 5.09 5.20 5.00 5.06 B5Vne 179 0
30 V* V850 Cen HXB 13 01 17.0968941216 -61 36 06.637549788   15.6 14.40     B2Vne 333 0
31 IGR J13020-6359 HXB 13 01 58.7205396744 -63 58 08.828687136           B0.5Ve 60 0
32 CPD-63 2495 HXB 13 02 47.6544015048 -63 50 08.626970292 10.34 10.72 9.98 10.03   O9.5Ve 793 0
33 SAX J1324.4-6200 HXB 13 24 26.70 -62 01 19.5           Be? 24 0
34 HD 119682 Be* 13 46 32.5709610312 -62 55 24.156893676 7.26 7.978 7.901 8.72   B0Ve 65 0
35 4U 1416-62 HXB 14 21 12.1560262026 -62 41 56.089360085   17.9 17.2     B1:V:e 156 0
36 SAX J1452.8-5949 HXB 14 52 52.70 -59 49 08.1           Be? 22 0
37 [KRL2007b] 171 HXB 15 44 02 -56 42.7           Be? 56 0
38 ESO 136-6 Sy2 15 53 35.3846505552 -61 40 59.036145456           ~ 43 0
39 HD 141926 HXB 15 54 21.7677373488 -55 19 44.310748620 8.71 9.47 9.13 9.38   B2IIIn 75 0
40 2S 1553-542 HXB 15 57 49.00 -54 24 54.0           Be 114 0
41 IGR J16207-5129 HXB 16 20 46.2644580432 -51 30 06.045320232   18.9   16.28 13.4 B1Ia 62 0
42 SWIFT J1626.5-5156 HXB 16 26 36.5197704024 -51 56 30.600051936       16.03 14.59 B0V 86 0
43 IGR J16318-4848 HXB 16 31 48.3090342864 -48 49 00.665054832         16.217 B[e]I 173 0
44 2XMMi J170004.2-415804 HXB 17 00 04.26 -41 58 04.7           Be? 24 0
45 RX J1739.4-2942 LXB 17 39 29.87 -29 42 10.7           Be? 38 0
46 HD 161103 HXB 17 44 45.7656635952 -27 13 44.478959340 8.44 9.23 9.13 9.12   B0.5III/IVe 82 0
47 2XMM J174912.3-272537 HXB 17 49 12.28 -27 25 37.4           B3 34 0
48 GRO J1750-27 HXB 17 49 12.969 -26 38 38.93           Be? 72 1
49 2MASS J18081689-1919395 HXB 18 08 16.893 -19 19 39.56           Be? 3 0
50 4FGL J1821.1-1422 HXB 18 20 29.5 -14 34 24           O9.5-B0Ve 64 1
51 IGR J18246-1425 HX? 18 24 28 -14 26.3           Be? 19 0
52 ATO J278.3657-10.5901 HXB 18 33 27.7668744360 -10 35 24.439580520     11.9     B0.5Ve 24 0
53 1XMM J183328.7-102409 * 18 33 28.7 -10 24 09           B1-1.5IIIe 1 0
54 Ginga 1843+009 HXB 18 45 36.8356591776 +00 51 47.437790184     20.6   16.616 B0-2IV-Ve 112 0
55 4U 1850-03 HXB 18 48 17.7 -02 25 13           Be? 109 1
56 XTE J1858+034 HXB 18 58 35.6252850353 +03 26 10.535956648           B?e 83 0
57 4U 1901+03 HXB 19 03 39.3926409480 +03 12 15.758070228           OB 108 0
58 XTE J1906+090 HXB 19 04 47.491 +09 02 41.40           Be? 29 0
59 Granat 1915+105 HXB 19 15 11.55576 +10 56 44.9052           ~ 2628 0
60 1H 1936+541 * 19 37 50 +54 14.2           Be 14 0
61 XTE J1946+274 HXB 19 45 39.3568693200 +27 21 55.501637040   18.76 16.92 15.62 14.38 B0-1IV-Ve 126 0
62 KS 1947+300 HXB 19 49 35.4841147968 +30 12 31.775979852   15.16 14.22 13.53 12.88 B0Ve 174 0
63 NAME W63 X-1 XB* 20 19 +45.7           Be? 5 0
64 BD+47 3129 HXB 20 30 30.8452150680 +47 51 50.717123784 8.95 9.594 9.273 9.273   B0.5III/IVe 43 0
65 V* V2246 Cyg HXB 20 32 15.2749858128 +37 38 14.843024844   22.16 19.41 17.32 15.18 B0Ve 440 0
66 GRO J2058+42 HXB 20 58 47.5371521256 +41 46 37.180486128   15.97 14.74 14.74 13.35 O9.5-B0IV-Ve 87 0
67 SAX J2103.5+4545 HXB 21 03 35.7100848936 +45 45 05.568751692   15.34 14.20 13.991 12.75 B0Ve 185 0
68 V* V490 Cep HXB 21 39 30.6903047304 +56 59 10.421969280   15.2       B1.5Ve 169 1
69 BD+49 3718 HXB 22 01 38.2021351296 +50 10 04.633278528 8.95 9.47 9.31     Be 48 0
70 4U 2238+60 HXB 22 39 20.8443538152 +61 16 26.607472284   16.26 14.80 13.89 12.92 Be 53 0

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