2019MNRAS.483.5595V


Query : 2019MNRAS.483.5595V

2019MNRAS.483.5595V - Mon. Not. R. Astron. Soc., 483, 5595-5613 (2019/March-2)

Low-mass X-ray binaries: the effects of the magnetic braking prescription.

VAN K.X., IVANOVA N. and HEINKE C.O.

Abstract (from CDS):

We present a population study of low-mass X-ray binaries (LMXBs) and intermediate-mass X-ray binaries with neutron star accretors, performed using the detailed one-dimensional stellar evolution code MESA. We identify all plausible Roche lobe overflowing binaries at the start of mass transfer, and compare our theoretical mass-transfer tracks to the population of well-studied Milky Way LMXBs. The mass-transferring evolution depends on the accepted magnetic braking (MB) law for angular momentum loss. The most common MB prescription ('Skumanich MB') originated from observations of the time-dependence of rotational braking of Sun-type stars, where the angular momentum loss rate depends on the donor mass Md, donor radius Rd, and rotation rate Ω, {dot}J ∝M_ d_ R_ d_^γ^ Ω^3. The functional form of the Skumanich MB can also be obtained theoretically assuming a radial magnetic field, isotropic isothermal winds, and boosting of the magnetic field by rotation. Here, we show that this simple form of the Skumanich MB law gives mass transfer rates an order of magnitude too weak to explain most observed persistent LMXBs. This failure suggests that the standard Skumanich MB law should not be employed to interpret Galactic, or extragalactic, LMXB populations, with either detailed stellar codes or rapid binary population synthesis codes. We investigate modifications for the MB law, and find that including a scaling of the magnetic field strength with the convective turnover time, and a scaling of MB with the wind mass-loss rate, can reproduce persistent LMXBs, and does a better job at reproducing transient LMXBs.

Abstract Copyright: © 2018 The Author(s) Published by Oxford University Press on behalf of the Royal Astronomical Society

Journal keyword(s): methods: numerical - binaries: general - stars: evolution - stars: magnetic field - X-rays: binaries

CDS comments: IGR J00291+5394 is a misprint for IGR J00291+5934.

Simbad objects: 44

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Number of rows : 44
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* V1037 Cas LXB 00 29 03.06 +59 34 19.0           ~ 267 1
2 4U 0513-40 LXB 05 14 06.59 -40 02 37.0           ~ 166 1
3 X LMC X-2 LXB 05 20 28.04 -71 57 53.3 17.20 18.00 18.0     ~ 184 0
4 V* UY Vol LXB 07 48 33.71 -67 45 07.7 16.10 17.00 16.9 16.7 17.05 ~ 618 0
5 4U 0919-54 LXB 09 20 26.4818170056 -55 12 24.512806404 20.40 21.30 21.0     ~ 164 0
6 V* BW Ant LXB 09 29 20.19 -31 23 03.2   18.50 18.63     ~ 185 0
7 V* GR Mus LXB 12 57 37.1833002949 -69 17 18.996899563   19.40 19.1     ~ 260 0
8 V* V822 Cen LXB 14 58 21.9347842080 -31 40 07.515432768 11.95 12.85 12.8     K3-K7V 544 0
9 V* QU TrA LXB 15 47 54.6 -62 34 06           ~ 156 0
10 V* V818 Sco LXB 16 19 55.0692669024 -15 38 25.017666540 11.60 12.40 11.1     Oev 1643 0
11 4U 1624-49 LXB 16 28 05.5318788600 -49 12 40.011095160           ~ 229 0
12 V* KZ TrA LXB 16 32 16.79 -67 27 39.3 17.40 18.60 18.5     ~ 582 1
13 V* V801 Ara LXB 16 40 55.5976953528 -53 45 04.948107156 17.50 18.20 17.5   17.07 ~ 870 1
14 V* HZ Her LXB 16 57 49.8110126616 +35 20 32.486555472 11.90 14.89 13.63 13.88   B3/6ep 2079 0
15 MXB 1658-298 LXB 17 02 06.54 -29 56 44.1 18.35 18.75 18.3     ~ 361 0
16 V* V1101 Sco LXB 17 05 44.4916006152 -36 25 23.049324480   20.10 18.6     ~ 439 0
17 IGR J17062-6143 LXB 17 06 16.2820758768 -61 42 40.593758076           ~ 87 0
18 V* V2216 Oph LXB 17 31 44.17 -16 57 40.9 16.40 17.10 16.8     ~ 293 1
19 XTE J1737-376 HX? 17 37 59 -37 46.3           ~ 49 1
20 V* V926 Sco LXB 17 38 58.2384053021 -44 27 00.699118812 16.90 17.70 17.5     ~ 456 0
21 3FHL J1746.2-2852 LXB 17 44 33.09 -28 44 27.0           ~ 534 0
22 [KRL2007b] 281 LXB 17 48 13.148 -36 07 57.02     20.9     ~ 102 0
23 [PLV2002] CX1 LXB 17 48 52.163 -20 21 32.40           ~ 195 1
24 [HAC2010] NGC 6440 X-2 LXB 17 48 52.76 -20 21 24.0           ~ 72 0
25 4U 1746-371 LXB 17 50 12.66 -37 03 08.2     8.43     ~ 195 1
26 Granat 1747-312 LXB 17 50 46.862 -31 16 28.86           ~ 118 1
27 [KRL2007b] 291 LXB 17 51 13.49 -30 37 23.4           ~ 246 0
28 SWIFT J1756.9-2508 LXB 17 56 57.35 -25 06 27.8           ~ 107 0
29 [KRL2007b] 304 LXB 18 06 59.8 -29 24 30           ~ 219 0
30 V* V4580 Sgr LXB 18 08 27.54 -36 58 44.3   16.81 16.51     ~ 984 0
31 V* V5511 Sgr LXB 18 13 39.03 -33 46 22.3   18.61 18.33 18.05   ~ 190 0
32 X Sgr X-4 LXB 18 23 40.57 -30 21 40.6   19.06 18.81     ~ 992 1
33 IGR J18245-2452 LXB 18 24 32.50 -24 52 07.8           ~ 224 0
34 4U 1823-00 LXB 18 25 22.02 -00 00 43.0   23.00 22     ~ 90 0
35 V* V691 CrA LXB 18 25 46.8185061768 -37 06 18.529336656 14.30 15.20 15.1     ~ 436 0
36 Cl* NGC 6652 SAW V10 LXB 18 35 43.649 -32 59 26.77     18.9     ~ 98 0
37 4U 1850-086 LXB 18 53 04.89 -08 42 19.7 20.40 21.20 21.0     ~ 252 1
38 2MAXI J1900-248 LXB 19 00 08.65 -24 55 13.7     18.09     ~ 210 0
39 X Aql X-1 LXB 19 11 16.0571313336 +00 35 05.868232692           ~ 1136 1
40 V* V1405 Aql LXB 19 18 47.871 -05 14 17.09 20.90 21.40 21.0     ~ 474 0
41 V* LZ Aqr LXB 21 23 14.54 -05 47 52.9 15.90 16.78 16.8     ~ 147 0
42 CXOU J212958.1+121002 XB* 21 29 58.06 +12 10 02.6     16.6     ~ 78 1
43 4U 2129+12 LXB 21 29 58.3124 +12 10 02.670 14.50 15.70 15.8     ~ 317 1
44 V* V1341 Cyg LXB 21 44 41.1544345272 +38 19 17.066570988 15.00 15.13 14.68 15.00   A9III 1155 1

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