2000A&A...356..191C


Query : 2000A&A...356..191C

2000A&A...356..191C - Astronomy and Astrophysics, volume 356, 191-199 (2000/4-1)

Wind properties of Wolf-Rayet stars at low metallicity: Sk41 (SMC).

CROWTHER P.A.

Abstract (from CDS):

The stellar properties of Sk41 (AB4, WN5h), the only known single Wolf-Rayet star in the SMC, are derived from ultraviolet (IUE), optical (AAT) and near-IR (NTT) spectroscopy. Contrary to expectations for low metal environments, the stellar properties of Sk41 are typical of equivalent WN stars in the Galaxy and LMC, with T*∼42kK, log(L/L)=5.7, v=1300km/s, H/He∼2 by number, and {dot}(M)/sqrt(f)=3x10–5M/yr, where f is the volume filling factor. The stellar luminosity of Sk41 is 50% below the minimum value predicted by single star evolutionary models at the metallicity of the SMC, suggesting a deficiency in present evolutionary models at low metallicity. Emission line luminosities of HeII λ4686 and CIV λλ5801-12 in SMC WR stars are not systematically lower than their Galactic and LMC counterparts. From 43 late-type and 59 early-type WN stars, logLλHeII=36.0erg/s and 35.8erg/s, respectively, while logLλCIV=36.5erg/s from 25 early-type WC stars. This new calibration has application in deriving WR populations in young starburst galaxies. Synthetic WN models are calculated with identical parameters except that metal abundances are varied. Following the Smith et al. WN classification scheme, CNO equilibrium models reveal that earlier spectral types are predicted at lower metallicity, i.e. WN3-4 at 0.04Z versus WN6 at 1.0Z. This provides an explanation for the trend towards earlier WN spectral types at low metallicity.

Abstract Copyright:

Journal keyword(s): stars: Wolf-Rayet - stars: fundamental parameters - stars: individual: Sk 41 - galaxies: Magellanic Clouds - galaxies: starburst

Simbad objects: 23

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Number of rows : 23
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 HD 2002 ** 00 23 16.16418 -76 43 27.3006           F5V 24 0
2 SMC AB 1 WR* 00 43 42.3082596960 -73 28 55.259220360 14.33 15.20 15.24   15.21 WN3+O4: 31 0
3 LIN 143 WR* 00 49 59.3505485400 -73 22 14.121279948 13.48 14.43 14.56   14.57 WN3/4+O4 37 0
4 LIN 160 WR* 00 50 43.4248908624 -73 27 05.815089828 12.363 13.304 13.426   13.55 WN6 49 0
5 NAME SMC G 00 52 38.0 -72 48 01   2.79 2.2     ~ 11145 1
6 SMC AB 9 WR* 00 54 32.1559137576 -72 44 35.666609568 14.31 15.26 15.43   15.69 WN3ha 28 0
7 HD 5980 WR* 00 59 26.5838833944 -72 09 53.927337312   11.13 11.31   11.029 WN4+O7I: 393 1
8 RMC 31 WR* 01 03 25.2272050176 -72 06 43.857668340   12.11 12.30     WN3:h+O5.5V+O5.5If+O7.5V 114 0
9 SMC AB 7 WR* 01 03 35.9241336168 -72 03 22.118601312 11.933 12.954 13.016   13.32 WN4+O6I(f) 48 0
10 IC 1613 GiC 01 04 48.4071 +02 07 10.185   10.42 10.01 9.77   ~ 1235 2
11 LIN 547 WR* 01 31 04.1367366432 -73 25 03.784411524   12.75 12.90     WO4+O4V 96 0
12 M 33 GiG 01 33 50.8965749232 +30 39 36.630403128 6.17 6.27 5.72     ~ 5838 1
13 HD 10747 * 01 41 17.9039417352 -75 39 49.118705820   8.01 8.15     B2V 44 0
14 NAME LMC G 05 23 34.6 -69 45 22     0.4     ~ 17428 0
15 NAME 30 Dor Nebula SFR 05 38 36.0 -69 05 11           ~ 1189 2
16 BAT99 108 WR* 05 38 42.396 -69 06 02.87   12.78 12.77     WN5h 84 0
17 HD 38282 WR* 05 38 53.3783458680 -69 02 00.895545204   10.98 11.11 11.26   WN5/6h+WN6/7h 170 1
18 Brey 93 WR* 05 39 34.3017622440 -68 44 09.155562972 14.291 15.626 15.204   15.620 WO3 66 0
19 HD 65865 WR* 07 59 46.2451717872 -28 44 03.085045476 10.62 11.20 10.90 11.16   WN5h 107 0
20 Mrk 116 PaG 09 34 02.1 +55 14 25           ~ 1104 1
21 NGC 3603 OpC 11 15 10.8 -61 15 32           ~ 1065 1
22 DR 1 Rad 20 16.6 +41 42           ~ 12 1
23 WR 142 WR* 20 21 44.3438785440 +37 22 30.544989960   14.39 12.99 12.73 11.04 WO2 129 0

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