2019RAA....19...12T


Query : 2019RAA....19...12T

2019RAA....19...12T - Research in Astron. and astroph., 19, 12-12 (2019/January-0)

On the possibility of disk-fed formation in supergiant high-mass X-ray binaries.

TAANI A., KARINO S., SONG L., AL-WARDAT M., KHASAWNEH A. and MOHAMMAD M.K.

Abstract (from CDS):

We consider the existence of a neutron star magnetic field by the detected cyclotron lines. We collected data on nine sources of high-mass X-ray binaries with supergiant companions as a test case for our model, to demonstrate their distribution and evolution. The wind velocity, spin period and magnetic field strength are studied under different mass loss rates. In our model, correlations between mass-loss rate and wind velocity are found and can be tested in further observations. We examine the parameter space where wind accretion is allowed, avoiding the barrier of rotating magnetic fields, with robust data on the magnetic field of neutron stars. Our model shows that most sources (six of nine systems) can be fed by the wind with relatively slow velocity, and this result is consistent with previous predictions. In a few sources, our model cannot fit the standard wind accretion scenario. In these peculiar cases, other scenarios (disk formation, partial Roche lobe overflow) should be considered. This would provide information about the evolutionary tracks of various types of binaries, and thus exhibit a clear dichotomy behavior in wind-fed X-ray binary systems.

Abstract Copyright:

Journal keyword(s): binaries: X-rays - stars: neutron - stars: fundamental parameters - accretion disks - formation - magnetic fields

Simbad objects: 11

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Number of rows : 11
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 V* V662 Cas HXB 01 18 02.6976641952 +65 17 29.829200388 12.27 11.99 11.14 10.33 9.58 B1Iae 271 0
2 X LMC X-4 HXB 05 32 49.5556042296 -66 22 13.202721768   13.9 14.0     O8III 668 0
3 V* GP Vel HXB 09 02 06.8608812864 -40 33 16.899168060 6.85 7.37 6.87 6.31 6.05 B0.5Ia 1503 0
4 V* V779 Cen HXB 11 21 15.0920532528 -60 37 25.630264596   14.4 12.27     O9III/Veq 1096 0
5 1A 1439-61 BL? 14 43 00 -62 30.0           ~ 368 1
6 V* QV Nor HXB 15 42 23.3633146128 -52 23 09.577395960   16.3 14.5     B0.2Ia:e 420 1
7 NAME AX J163904-4642 HXB 16 39 06 -46 42.2           BIV-V 97 1
8 2MASS J16492695-4349090 HXB 16 49 26.95 -43 49 09.0           B0.5Ib 58 0
9 NAME OAO 1657-41 HXB 17 00 48.884 -41 39 21.46           Ofpe/WN9 247 0
10 SAX J1802.7-2017 HXB 18 02 41.9407199832 -20 17 17.312648064   17.4 16.4     BIII 88 0
11 4U 1907+09 HXB 19 09 38.0514267264 +09 49 47.270139132   19.41 16.35 15.570 12.53 O9.5Iab 344 0

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