2007A&A...473..603M


Query : 2007A&A...473..603M

2007A&A...473..603M - Astronomy and Astrophysics, volume 473, 603-614 (2007/10-2)

The empirical metallicity dependence of the mass-loss rate of O- and early B-type stars.

MOKIEM M.R., DE KOTER A., VINK J.S., PULS J., EVANS C.J., SMARTT S.J., CROWTHER P.A., HERRERO A., LANGER N., LENNON D.J., NAJARRO F. and VILLAMARIZ M.R.

Abstract (from CDS):

We present a comprehensive study of the observational dependence of the mass-loss rate in stationary stellar winds of hot massive stars on the metal content of their atmospheres. The metal content of stars in the Magellanic Clouds is discussed, and a critical assessment is given of state-of-the-art mass-loss determinations of OB stars in these two satellite systems and the Milky-Way. Assuming a power-law dependence of mass loss on metal content, {dot}(M)∝Zm, and adopting a theoretical relation between the terminal flow velocity and metal content, v∝ Z0.13 (Leitherer et al., 1992ApJ...401..596L), we find m=0.83±0.16 for non-clumped outflows from an analysis of the wind momentum luminosity relation (WLR) for stars more luminous than 105.2L. Within the errors, this result is in agreement with the prediction m=0.69±0.10 by Vink et al. (2001A&A...369..574V). Absolute empirical values for the mass loss, based on Hα and ultraviolet (UV) wind lines, are found to be a factor of two higher than predictions in this high luminosity regime. If this difference is attributed to inhomogeneities in the wind, and this clumping does not impact the predictions, this would imply that luminous O and early-B stars have clumping factors in their Hα and UV line forming regions of about a factor of four. For lower luminosity stars, the winds are so weak that their strengths can generally no longer be derived from optical spectral lines (essentially Hα) and one must currently rely on the analysis of UV lines. We confirm that in this low-luminosity domain the observed Galactic WLR is found to be much steeper than expected from theory (although the specific sample is rather small), leading to a discrepancy between UV mass-loss rates and the predictions by a factor 100 at luminosities of L∼104.75L, the origin of which is unknown. We emphasize that even if the current mass-loss rates of hot luminous stars would turn out to be overestimated as a result of wind clumping, but the degree of clumping would be rather independent of metallicity, the scalings derived in this study are expected to remain correct.

Abstract Copyright:

Journal keyword(s): stars: early-type - Magellanic Clouds - stars: winds, outflows - stars: evolution - stars: mass-loss

CDS comments: Table A.2 HD 2670952 is a misprint for HD 270952.

Simbad objects: 123

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Number of rows : 123
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 SK 10 s*b 00 46 42.1591125672 -73 24 55.494317340 11.903 12.984 13.176   13.35 O6.5I(f) 45 0
2 BBB SMC 266 s*b 00 47 50.0484011088 -73 08 21.054056928   12.35 12.55 12.36   O6I(f) 69 0
3 BBB SMC 1 * 00 50 17.2067283312 -72 53 30.259838832 12.093 13.144 13.326 13.39 13.47 OC7.5III((f)) 43 0
4 SK 35 * 00 50 18.1229621664 -72 38 10.034313252 11.04 10.96 12.40   12.12 O9.5Ib 41 0
5 LIN 156 s*b 00 50 32.4050818488 -72 52 36.441355908 11.553 12.604 12.756   12.89 O5.5I(f) 50 0
6 AzV 83 s*b 00 50 52.0015192368 -72 42 14.940550980 12.233 13.244 13.366   13.67 O7Iaf+ 47 0
7 AzV 95 * 00 51 21.6002057448 -72 44 14.875230300 12.67 13.64 13.83   13.95 O7III((f)) 40 0
8 AzV 104 s*b 00 51 38.4279675528 -72 48 06.081643404 12.053 13.064 13.226   13.57 B0.5Ia 33 0
9 NAME SMC G 00 52 38.0 -72 48 01   2.79 2.2     ~ 11142 1
10 AzV 186 * 00 57 26.9385640632 -72 33 13.559385672 12.66 13.88 13.86   14.15 O8III((f)) 25 0
11 AzV 202 * 00 58 14.4693679440 -72 07 29.549446932 13.12 14.18 14.34   14.52 B1Ib 15 0
12 SK 76 s*b 00 58 55.6254525024 -72 32 08.467356804 11.64 12.65 12.75   12.84 BN0Ia 41 0
13 Cl* NGC 346 ELS 7 * 00 58 57.3961905528 -72 10 33.660822720 12.68 13.82 14.13   14.28 O4V((f+)) 52 0
14 Cl* NGC 346 W 3 * 00 59 00.7591806336 -72 10 28.171806492 11.46 12.61 12.80   13.63 O2III(f) 62 0
15 Cl* NGC 346 NMC 28 * 00 59 01.8187292184 -72 10 31.216864152   13.95 14.18     O5.5V((f+)) 31 0
16 [MA93] 1125 HXB 00 59 11.646 -72 09 57.52   14.82 15.123 15.34 15.293 O5.5V 23 0
17 AzV 226 * 00 59 20.7295412880 -72 17 10.615804836 12.97 14.12 14.19     O7IIIn((f)) 25 0
18 SK 80 s*b 00 59 31.9751731656 -72 10 46.106730444   12.12 12.31     O7Iaf+ 108 0
19 RMC 17 s*b 00 59 45.7300850520 -72 44 56.416111080   12.02 12.2     B1Ia 63 0
20 SK 84 * 01 00 06.7253852112 -72 47 19.124459916 12.58 13.71 13.91   14.16 O6V 43 0
21 RMC 18 s*b 01 00 06.8830919184 -72 13 57.371461032   11.7 11.5     B1Ia 66 0
22 AzV 296 * 01 02 08.6480463408 -72 13 20.012601648 13.01 14.19 14.38   14.62 O7.5V((f)) 17 0
23 AzV 304 * 01 02 21.4823289456 -72 39 14.587308576   14.66 14.77     B0.5V 48 0
24 SK 116 s*b 01 04 55.7398901040 -72 46 48.146591280 11.413 12.494 12.646     O9Iabw 35 0
25 AzV 388 * 01 05 39.5306276568 -72 29 26.938329540 12.79 13.86 14.12   14.37 O5V 42 0
26 SK 131 s*b 01 07 32.6015725776 -72 17 38.750615340 11.903 12.974 13.146     B0.5Ia 21 0
27 AzV 435 * 01 08 17.9083159848 -71 59 54.357974016 12.93 13.98 14.11   13.97 O3V((f*)) 17 0
28 SK 143 * 01 10 55.7567270880 -72 42 56.223094032 12.15 12.98 12.89 12.78 11.64 O9.7Ib 80 0
29 SK 148 * 01 12 29.0077488048 -72 29 29.054516928 11.913 13.014 13.176   13.32 O8.5II((f)) 41 0
30 SK 159 s*b 01 15 58.8782034384 -73 21 24.351532740 10.80 11.77 11.90     B0Ia 73 0
31 HD 14947 s*b 02 26 46.9899705528 +58 52 33.118732380 7.83 8.44 7.98     O4.5If 254 0
32 HD 15558 Y*O 02 32 42.5366901168 +61 27 21.572901360 7.82 8.37 7.87 7.34 6.94 O4.5III(f) 314 0
33 HD 15629 Y*O 02 33 20.5873992264 +61 31 18.188762844 8.23 8.85 8.42     O4.5V((fc)) 241 0
34 NAME Magellanic Clouds GrG 03 00 -71.0           ~ 7060 0
35 HD 18409 * 03 00 29.7126315336 +62 43 19.052057856 9.832 8.72 8.40     O9.7Ib 77 0
36 * ksi Per ** 03 58 57.9024302099 +35 47 27.709515737 3.190 4.080 4.060 3.88 3.89 O7.5III(n)((f)) 832 0
37 * alf Cam s*b 04 54 03.0113886719 +66 20 33.633625509 3.47 4.34 4.29 4.18 4.18 O9Ia 661 1
38 SK -66 15 * 04 55 22.3466106768 -66 28 19.100254044 11.888 12.660 12.894   12.759 B0.5Ia 17 0
39 SK -66 16 * 04 55 29.4146271192 -66 23 12.244739964 11.605 12.361 12.461   11.908 O9.7Ib 12 0
40 [ELS2006] N11 058 * 04 55 52.3578837456 -66 34 13.574752212 13.090 13.953 14.197   14.422 O5.5V((f)) 8 0
41 [ELS2006] N11 029 * 04 55 56.3298710160 -66 29 04.278105240   13.51 13.63     OC9.7Ib 10 0
42 SK -66 18 Pu* 04 55 59.8226723496 -65 58 29.732367612 12.394 13.294 13.467   13.725 O6V((f)) 17 0
43 [ELS2006] N11 068 * 04 56 04.6016389344 -66 23 58.014437424 13.496 14.377 14.545   14.657 O7V((f)) 9 0
44 [L72] LH 9-89 * 04 56 11.0176066200 -66 28 24.363611436 12.580 13.531 13.645   13.837 B0IIIn 10 0
45 PGMW 1017 * 04 56 15.5465488008 -66 27 21.276695196   13.7 13.93     B0III 11 0
46 [ELS2006] N11 051 Pu* 04 56 29.6988034392 -66 21 38.860019604 12.909 13.812 13.990   14.173 O5Vn((f)) 9 0
47 PGMW 3058 Pu* 04 56 42.1339871825 -66 24 54.713617412 12.901 14.092 14.089   13.991 O3V((f*)) 16 0
48 [L72] LH 10-3061 * 04 56 42.5074945536 -66 25 18.217550208 12.699 13.595 13.491   13.405 ON2III(f*) 25 0
49 PGMW 3100 * 04 56 45.2033296872 -66 25 10.776628056 13.007 13.736 13.648   13.547 O5III(f+) 12 0
50 [ELS2006] N11 026 * 04 56 52.5287243472 -66 19 56.230847832 12.646 13.405 13.580     O2.5III(f*) 14 0
51 PGMW 3168 * 04 56 54.4599428448 -66 24 15.867618408   13.57 13.68     O7II(f) 16 0
52 [ELS2006] N11 066 Pu* 04 56 57.5049204216 -66 35 21.664009428 13.286 14.211 14.362   14.618 O7V((f)) 8 0
53 [ELS2006] N11 045 * 04 56 58.3147552632 -66 31 33.329857656   13.82 13.97     O9-9.5III 8 0
54 [ELS2006] N11 061 * 04 57 25.7192939592 -66 21 05.738996376 13.418 14.233 14.231   14.208 O9V 8 0
55 Brey 10a WR* 04 57 27.4544617632 -67 39 02.864000880 12.213 13.314 13.496   13.564 O2If*/WN5 57 1
56 HD 270952 WR* 05 01 23.0763876936 -65 52 33.206008764 10.944 11.871 12.07   12.187 O6Iaf+ 54 0
57 SK -70 69 * 05 05 18.6717716496 -70 25 49.874974104 12.586 13.616 13.854   14.074 O3V(f) 39 0
58 HD 269050 s*b 05 07 20.4218668824 -68 32 08.569322196 10.593 11.581 11.54 11.46 11.55 B0Ia(e?) 70 0
59 V* AE Aur Or* 05 16 18.1493304816 +34 18 44.344404000 5.48 6.18 5.96     O9.5V 564 1
60 SK -65 47 s*b 05 20 54.7193542416 -65 27 17.880205176 11.451 12.270 12.466   12.741 O4If 19 0
61 NAME LMC G 05 23 34.6 -69 45 22     0.4     ~ 17424 0
62 [GMP94] 496 * 05 26 44.2108 -68 48 42.116   13.50 13.73     O5V(f) 9 0
63 SK -66 100 * 05 27 45.4472444328 -66 55 15.293259480 12.227 12.976 13.204   13.501 O6II(f) 44 0
64 W61 16-8 * 05 28 46.9222348728 -68 47 47.796287748 12.283 13.444 13.666   13.854 ON2III(f*) 18 0
65 NGC 2004 Cl* 05 30 41.340 -67 17 21.83   9.6       ~ 275 0
66 HD 269698 s*b 05 31 44.2080798984 -67 38 01.374839556 9.520 12.00 12.22 12.47 11.167 O4Ia 111 0
67 W61 28-5 * 05 34 28.4650523832 -69 43 56.833403844 12.795 13.630 13.774   14.063 O4V(f+) 10 0
68 W61 28-23 * 05 34 50.1539297904 -69 46 32.544537024 12.698 13.596 13.702   13.752 O3.5V(f+) 12 0
69 [M2002] LMC 163521 * 05 35 45.2600 -69 11 35.105   14.11 14.3     O3.5III(f+) 10 0
70 * eps Ori s*b 05 36 12.81335 -01 12 06.9089 0.48 1.51 1.69 1.76 1.93 B0Ia 896 0
71 BI 237 * 05 36 14.6333257920 -67 39 19.168082640 12.865 13.790 13.830   13.948 O2V(f*) 35 0
72 SK -66 169 s*b 05 36 54.6614083464 -66 38 22.427577744   12.43 12.56     O9.7Ia+ 33 0
73 HD 269896 s*b 05 37 49.1356176384 -68 55 01.639049016 11.338 9.493 11.449 11.49   ON9.7Ia+ 86 0
74 [HSH95] 33 * 05 38 42.2113 -69 06 00.983     14.43     O3V 7 0
75 SSTISAGEMC J053842.37-690615.0 * 05 38 42.4988 -69 06 15.403           O4If+ 6 0
76 Cl* NGC 2070 MH 551 * 05 38 42.512 -69 06 04.52   14.64 14.81     O3V 16 0
77 Cl* NGC 2070 MH 859 * 05 38 44.2218 -69 05 56.973   13.67 13.94   13.73 O3III(f+) 25 1
78 W61 3-24 * 05 39 13.5533958720 -69 30 05.012730900   14.48 14.6     O3.5V(f+) 9 0
79 * mu. Col V* 05 45 59.8950238944 -32 18 23.162261796 3.84 4.90 5.18 5.30 5.57 O9.5V 495 0
80 * kap Ori s*b 05 47 45.3888404 -09 40 10.577707 0.87 1.88 2.06 2.09 2.27 B0.5Ia 569 0
81 HD 42088 * 06 09 39.5728368936 +20 29 15.450599580 6.73 7.58 7.57 8.45   O6V((f))z 244 0
82 HD 46223 Y*O 06 32 09.3068103600 +04 49 24.705695568 6.73 7.50 7.28 6.95 6.79 O4V((f)) 381 0
83 HD 46202 bC* 06 32 10.4706981304 +04 57 59.764912343 7.60 8.332 8.269 7.98 7.86 O9.2V 285 0
84 * zet Pup BY* 08 03 35.04754 -40 00 11.3321 0.89 1.98 2.25 2.36 2.58 O4I(n)fp 1154 1
85 NAME Leo A G 09 59 26.46 +30 44 47.0 14.08 13.54 13.26 13.33   ~ 615 0
86 NAME Sex A H2G 10 11 00.5 -04 41 30 12.48 12.13 11.93 11.78   ~ 727 2
87 HD 91943 Pu* 10 35 42.0066727392 -58 11 34.378362924 5.91 6.74 6.70 7.70   B0.7Ib 109 0
88 HD 91969 * 10 35 49.3174367088 -58 13 27.414688080 5.57 6.41 6.43 7.56   B0I+ 120 0
89 HD 93028 SB* 10 43 15.3393101352 -60 12 04.231982304 7.29 8.24 8.30 9.26   O9IV 169 0
90 HD 93128 SB* 10 43 54.3957741024 -59 32 57.497266716 8.82 8.97 8.77 9.40 8.71 O3.5V((fc))z 103 1
91 HD 93129 ** 10 43 57.462360 -59 32 51.27000 6.26 7.840 7.884 7.839   O2If*+O3.5V((f)) 204 1
92 HD 93146 ** 10 44 00.13416 -60 05 08.7396           O6V+O9.5V 85 0
93 HD 93146A * 10 44 00.1579435416 -60 05 09.880180368 7.57 8.45 8.47 9.281   O7V((f))z 85 0
94 HD 93204 EB* 10 44 32.3390794992 -59 44 31.020804780 7.63 8.52 8.42 8.20 7.92 O5.5V((f)) 191 0
95 HD 93250 * 10 44 45.0275085072 -59 33 54.680974848 6.73 8.12 7.50 8.38   O4III(fc) 315 0
96 * eta Car Em* 10 45 03.545808 -59 41 03.95124 6.37 7.03 6.48 6.123 4.41 LBV 2436 0
97 HD 303308 ** 10 45 05.9147911152 -59 40 05.925360036 7.45 8.30 8.17 7.92 7.75 O4.5V((fc)) 300 0
98 HD 94909 s*b 10 56 24.4652481336 -57 33 04.833174060 7.31 7.82 7.34 8.13   B0Ia 72 0
99 UGC 8091 H2G 12 58 40.1930636208 +14 13 00.739589628 15.24 15.16 14.98 14.81   ~ 463 0
100 HD 115842 s*b 13 20 48.3393402216 -55 48 02.482824528 5.70 6.39 6.09 5.77 5.52 B0.5Ia 154 0
101 HD 122879 V* 14 06 25.1578487688 -59 42 57.254187024 5.90 6.64 6.50 6.33 6.18 B0Ia 174 1
102 * tau Sco * 16 35 52.9528530 -28 12 57.661515 1.55 2.56 2.81 2.93 3.18 B0.2V 920 0
103 * zet Oph Be* 16 37 09.5400587698 -10 34 01.509742704 1.73 2.58 2.56 2.46 2.50 O9.2IVnn 1839 0
104 HD 152234 s*b 16 54 01.8373779952 -41 48 22.987396952 4.92 5.64 5.45     B0.5Ia 194 0
105 HD 190864 Em* 20 05 39.8022808800 +35 36 27.991297908 7.18 7.93 7.78     O6.5III(f) 225 0
106 HD 192639 s*b 20 14 30.4275801672 +37 21 13.816276704 6.83 7.46 7.11     O7.5Iabf 292 0
107 HD 193514 Em* 20 19 08.4971150880 +39 16 24.253036608 7.32 7.83 7.38     O7Ib(f) 187 0
108 HD 193682 Em* 20 20 08.9387110032 +37 49 51.313158876 8.44 8.87 8.42     O4.5IV(f) 87 0
109 Schulte 2 V* 20 31 22.0268518920 +41 31 28.365740076 12.01 11.82 10.64     B1Ib: 65 0
110 BD+40 4219 * 20 32 13.8219154968 +41 27 12.006516060 11.50 11.40 10.22     O7III((f)) 113 0
111 Schulte 7 * 20 33 14.1095938872 +41 20 21.904113804 12.24 12.00 10.55     O3If* 145 0
112 BD+40 4227A SB* 20 33 15.0781182864 +41 18 50.479292556 10.42 10.27 8.98 8.03 6.83 O6Ib(fc)+O4.5:III:(fc) 246 0
113 Schulte 8C * 20 33 17.9820761856 +41 18 31.194812988 12.2 11.43 10.19     O4.5III(fc) 83 0
114 BD+41 3804 s*b 20 33 46.1145474912 +41 33 00.991426968 11.82 11.41 9.88     O9.7Iab 103 0
115 BD+41 3807 SB* 20 34 08.5147948176 +41 36 59.408503092 11.74 11.52 10.03     O5.5Ifc 128 0
116 * 68 Cyg SB* 21 18 27.1862219256 +43 56 45.399147864 4.05 4.99 5.00     O7.5IIIn((f)) 374 0
117 HD 207198 Y*? 21 44 53.2791389640 +62 27 38.048647248 5.61 6.25 5.94 5.66 5.49 O8.5II 347 0
118 * 19 Cep * 22 05 08.7897533088 +62 16 47.332569936 4.36 5.19 5.11 4.95 4.92 O9Ib 380 0
119 * lam Cep s*b 22 11 30.5765111040 +59 24 52.154264880 4.55 5.29 5.05 4.77 4.62 O6.5I(n)fp 684 1
120 HD 210809 s*b 22 11 38.6004719208 +52 25 47.950615308 6.7 7.61 7.56     O9Iab 214 0
121 * 10 Lac ** 22 39 15.6786372 +39 03 00.971152 3.650 4.670 4.880 4.98 5.19 O9V 758 0
122 HD 217086 Y*O 22 56 47.1887590800 +62 43 37.657173900 7.88 8.30 7.66 8.35   O7Vnn((f))z 255 0
123 NAME Local Group GrG ~ ~           ~ 8385 0

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