2021A&A...650A.128G


Query : 2021A&A...650A.128G

2021A&A...650A.128G - Astronomy and Astrophysics, volume 650A, 128-128 (2021/6-1)

Blue supergiants as tests for stellar physics.

GEORGY C., SAIO H. and MEYNET G.

Abstract (from CDS):


Context. Massive star evolution is still poorly understood, and observational tests are required to discriminate between different implementations of physical phenomena in stellar evolution codes.
Aims. By confronting stellar evolution models with observed properties of blue supergiants, such as pulsations, the chemical composition, and position in the Hertzsprung-Russell diagram, we aim to determine which of the criteria used for convection (Schwarzschild or Ledoux) is best able to explain the observations.
Methods. We computed state-of-the-art stellar evolution models with either the Schwarzschild or the Ledoux criterion for convection. Models are for 14 to 35M at solar or Large Magellanic Cloud metallicity. For each model, we computed the pulsation properties to know when radial modes are excited. We then compared our results with the position of blue supergiants in the Hertzsprung-Russell diagram, with their surface chemical composition and with their variability.
Results. Our results at Large Magellanic Cloud metallicity shows only a slight preference for the Ledoux criterion over the Schwarzschild one in reproducing, at the same time, the observed properties of blue supergiants, even if the Schwarzschild criterion cannot be excluded at this metallicity. We checked that changing the overshoot parameter at solar metallicity does not improve the situation. We also checked that our models are able to reproduce the position of Galactic blue supergiants in the flux-weighted-gravity-luminosity relation.
Conclusions. We confirm that overall, models computed with the Ledoux criterion are slightly better in matching observations. Our results also support the idea that most Galactic α Cyg variables are blue supergiants from group 2, that is stars that have been through a previous red supergiant phase where they have lost a large amount of mass.

Abstract Copyright: © ESO 2021

Journal keyword(s): stars: evolution - stars: interiors - stars: massive - stars: oscillations - supergiants - convection

Simbad objects: 76

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Number of rows : 76
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 * kap Cas s*b 00 32 59.9918836206 +62 55 54.413126128 3.50 4.30 4.16 4.02 3.96 BC0.7Ia 462 0
2 * 53 Cas * 02 03 00.1876117560 +64 23 24.064866924 5.69 5.930 5.614     A0Ib 112 0
3 HD 12953 sg* 02 08 40.5790963584 +58 25 24.970714608 6.28 6.29 5.68 5.09 4.59 A1Ia 193 0
4 HD 13476 sg* 02 13 41.6105031504 +58 33 38.107279260 7.26 7.04 6.43 5.89 5.40 A2Iab 137 0
5 HD 13744 * 02 15 58.6970437416 +58 17 37.025669076 8.51 8.27 7.64     B9Iab 70 0
6 HD 13854 s*b 02 16 51.7162480872 +57 03 18.882144756 6.10 6.76 6.48 6.14 5.95 B1Iab 213 0
7 * 61 And s*b 02 19 04.4525174952 +57 08 07.795069656 6.63 7.00 6.5678   6.6876 B3Ia 206 0
8 HD 14143 s*b 02 19 13.9420338600 +57 10 09.234950232 6.71 7.16 6.7000     B2Ia 201 0
9 HD 14433 sg* 02 21 55.4354619696 +57 14 34.499997492 7.01 6.97 6.4800 5.79 6.7332 A1Ia 151 0
10 * i Per sg* 02 22 21.4343107056 +55 50 44.350353276 5.43 5.54 5.17 4.79 4.47 A1Ia 195 0
11 * 10 Per s*b 02 25 16.0283450208 +56 36 35.354429280 5.95 6.56 6.26 5.93 5.74 B2Ia 240 0
12 HD 14956 s*b 02 26 45.6955268424 +57 40 45.044622588 7.63 7.92 7.20 6.56 6.05 B1.5Ia 148 0
13 HD 20041 * 03 15 47.9705004096 +57 08 26.243459556 6.61 6.52 5.79     A0Ia 139 1
14 HD 21291 s*b 03 29 04.1328896160 +59 56 25.201164588 4.40 4.63 4.22 3.84 3.46 B9Ia 290 0
15 HD 268757 s*y 04 54 14.2558856832 -69 12 36.442179792 15.702 11.662 10.157 9.21 8.52 G8_0 87 0
16 HD 268835 s*b 04 56 47.0795205816 -69 50 24.769621212 10.21 10.77 10.63 10.72 10.16 B8[e] 111 0
17 HD 270920 * 04 59 09.0605370384 -65 40 03.723642912   10.80 9.91     G5I: 41 0
18 HD 268822 * 05 00 40.8655620648 -66 28 30.510778440 11.63 11.23 10.67 10.6 10.122 G5I 39 0
19 HD 269006 s*b 05 02 07.3942092168 -71 20 13.116800076 9.93 10.60 10.55 10.43 10.38 LBV 251 0
20 HD 269018 * 05 03 29.5852380288 -70 41 59.407404648 10.979 11.65 11.704   11.501 OB 29 0
21 HD 33579 sg* 05 05 55.5114721104 -67 53 10.932988848   9.32 9.13     A2Ia+ 142 0
22 * bet Ori s*b 05 14 32.27210 -08 12 05.8981 -0.56 0.10 0.13 0.13 0.15 B8Iae 763 0
23 V* S Dor sg* 05 18 14.3570612088 -69 15 01.149576912 9.08 10.39 10.25 9.74 9.14 Be3 378 0
24 HD 271182 s*y 05 21 01.7107333512 -65 48 02.420745444   10.36 9.620     F8_0 105 0
25 NAME LMC G 05 23 34.6 -69 45 22     0.4     ~ 17428 0
26 HD 269541 sg* 05 26 34.8842550480 -68 52 07.335871572   10.53 10.43     A2Ia 41 0
27 HD 269594 * 05 28 20.3343956112 -67 24 18.316171188   11.28 10.69 10.32 9.95 G5I 50 0
28 HD 269612 * 05 28 52.5247015032 -68 59 28.954460292   11.4 11.2     F8I: 23 0
29 HD 269660 s*b 05 30 47.7753524136 -71 04 02.325450144 10.281 11.15 11.19   10.767 B2Ia 59 0
30 HD 269662 sg* 05 30 51.4749432240 -69 02 58.590657600 10.23 10.52 10.28 10.40 10.390 A0Ia 103 0
31 HD 269697 s*y 05 31 38.4223359696 -67 28 11.562011760 10.99 10.69 10.28     F6Ia 60 0
32 HD 269781 sg* 05 34 22.4676706872 -67 01 23.569790196 9.34 9.94 9.87 9.74 9.67 A0Iae 60 0
33 HD 37974 s*b 05 36 25.8534763728 -69 22 55.789571064 10.056 11.12 10.99 11.00 10.423 B0.5e 122 0
34 CPD-69 463 s*y 05 38 51.6161224200 -69 08 07.314706104 11.93 12.45 12.014     F7Ia 89 1
35 HD 39970 V* 05 56 56.1185421720 +24 14 58.879547772 6.2 6.367 6.029     A0Ib 92 0
36 * chi02 Ori s*b 06 03 55.1843706432 +20 08 18.428141364 4.24 4.91 4.63 4.32 4.10 B2Ia 450 0
37 * 13 Mon * 06 32 54.2279021568 +07 19 58.690911432 4.30 4.50 4.50 4.40 4.36 A0I 199 1
38 HD 80057 sg* 09 16 04.0298657640 -44 53 55.397416632 6.2 6.276 6.040 7.26   A0Iab 56 0
39 * eta Leo * 10 07 19.9523915176 +16 45 45.587968398 3.17 3.39 3.41 3.32 3.35 A0Ib 336 0
40 HD 91533 * 10 32 47.8092799464 -58 40 00.278958756 6.12 6.283 6.006 7.11   A2Iab/b 57 0
41 * rho Leo s*b 10 32 48.6703908997 +09 18 23.705339948 2.780 3.720 3.870 3.90 4.06 B1IbNstr 532 0
42 HD 91943 Pu* 10 35 42.0066727392 -58 11 34.378362924 5.91 6.74 6.70 7.70   B0.7Ib 109 0
43 HD 92207 sg* 10 37 27.0681291600 -58 44 00.016141092 5.71 5.95 5.45     A0Ia 153 0
44 HD 102878 * 11 50 27.2770577376 -62 38 57.775776936 5.87 5.918 5.702 6.95   A2Iab 73 0
45 HD 105071 * 12 05 53.6200137672 -65 32 48.754130532 6.05 6.436 6.303     B8Ia 50 0
46 HD 106068 * 12 12 21.9798609024 -62 57 02.785963212 5.90 6.28 5.98 5.64 5.39 B8Ia/ab 80 0
47 HD 111613 sg* 12 51 17.9760267672 -60 19 47.240368104 6.00 6.10 5.72 5.32 5.03 B9.5Iab 117 0
48 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
49 HD 148688 s*b 16 31 41.7687715992 -41 49 01.732565676 5.16 5.78 5.39 5.05 4.70 B1Iaeqp 162 0
50 HD 149076 * 16 34 38.5739345016 -47 00 15.729940800 7.79 7.96 7.47 6.98 6.59 B9/A0Iab/b 39 0
51 HD 149077 * 16 34 45.6925576080 -49 23 44.150241912 7.90 7.87 7.43 8.25   B9.5Ib 40 0
52 * zet01 Sco s*b 16 53 59.7271314888 -42 21 43.307334468 4.80 5.31 4.79 4.32 3.86 B1.5Ia+ 372 0
53 * k Sco s*b 17 04 49.3516568736 -34 07 22.541680380 4.44 5.13 4.87 4.59 4.42 B2Iab 151 0
54 * 67 Oph s*b 18 00 38.7157893000 +02 55 53.633402904 3.34 3.96 3.93 3.84 3.81 B5Ib 407 0
55 HD 165784 sg* 18 08 38.5860382752 -21 26 58.415481924 7.7 7.42 6.58 7.22   A2Iab 68 1
56 HD 166167 * 18 10 14.1234448920 -21 19 37.808021532 9.18 9.50 9.12 9.25   B9.5Iab/b 33 0
57 HD 185859 Em* 19 40 28.3246282752 +20 28 37.474738716 6.290 6.890 6.520 6.18 5.92 B3I+ 139 0
58 HD 186745 sg* 19 45 24.3491996232 +23 56 34.374919992 8.00 7.96 7.03     B8Ia 102 0
59 HD 187982 V* 19 52 01.5943128840 +24 59 31.787432196 6.41 6.28 5.57     A2Ia 113 0
60 HD 190603 s*b 20 04 36.1742825304 +32 13 06.953333016 5.73 6.19 5.65 5.13 4.71 B1.5Ia+ 344 0
61 HD 193183 * 20 17 22.7627493456 +38 14 08.422560204   7.386 7.021     B1.5Ib 72 0
62 HD 194279 s*b 20 23 18.1647782064 +40 45 32.598481500 8.01 8.04 7.01 5.98 5.17 B2Ia 191 0
63 * 42 Cyg pA* 20 29 20.3901455688 +36 27 17.017726104   6.291 5.899     A2Iab-Ib 87 0
64 * alf Cyg sg* 20 41 25.91514 +45 16 49.2197 1.11 1.34 1.25 1.14 1.04 A2Ia 750 0
65 * 55 Cyg s*b 20 48 56.2915921440 +46 06 50.883645024 4.83 5.28 4.86 4.41 4.10 B4Ia 493 0
66 * sig Cyg sg* 21 17 24.9522700076 +39 23 40.847039148 3.98 4.37 4.24 4.06 3.92 A0Ia 266 0
67 * 9 Cep Pu* 21 37 55.2241394424 +62 04 54.990376788 4.49 5.03 4.73 4.42 4.24 B2Ib 301 0
68 * nu. Cep sg* 21 45 26.9251364232 +61 07 14.900183018 4.94 4.81 4.29 3.79 3.35 A2Iae 249 1
69 HD 207673 * 21 49 40.0940581200 +41 08 55.633325604 6.97 6.90 6.48     A2Ib 80 0
70 * 13 Cep V* 21 54 53.1538880928 +56 36 40.415024952 6.50 6.52 5.80 5.12 4.52 B8Ib 187 0
71 HD 210221 Pu* 22 07 25.5851458248 +53 18 26.773650216 6.81 6.555 6.171     A3Ib 81 0
72 * 4 Lac * 22 24 30.9914928480 +49 28 35.010584652 4.33 4.67 4.58 4.45 4.35 A0Ib 181 0
73 HD 213470 sg* 22 30 18.7035036480 +57 13 31.595985156 7.45 7.183 6.679     A3Ia 83 0
74 BD+60 2582 * 23 35 30.6329276688 +60 54 46.221359364 9.46 9.31 8.7     B7Iab 29 0
75 HD 223960 sg* 23 53 49.9830046536 +60 51 12.243820356 7.56 7.61 6.90     A0.1Ia 93 0
76 NAME Local Group GrG ~ ~           ~ 8387 0

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