2016A&A...592A..15C


Query : 2016A&A...592A..15C

2016A&A...592A..15C - Astronomy and Astrophysics, volume 592A, 15-15 (2016/8-1)

The dependence of convective core overshooting on stellar mass.

CLARET A. and TORRES G.

Abstract (from CDS):

Context. Convective core overshooting extends the main-sequence lifetime of a star. Evolutionary tracks computed with overshooting are very different from those that use the classical Schwarzschild criterion, which leads to rather different predictions for the stellar properties. Attempts over the last two decades to calibrate the degree of overshooting with stellar mass using detached double-lined eclipsing binaries have been largely inconclusive, mainly because of a lack of suitable observational data.
Aims. We revisit the question of a possible mass dependence of overshooting with a more complete sample of binaries, and examine any additional relation there might be with evolutionary state or metal abundance Z.
Methods. We used a carefully selected sample of 33 double-lined eclipsing binaries strategically positioned in the H-R diagram with accurate absolute dimensions and component masses ranging from 1.2 to 4.4M. We compared their measured properties with stellar evolution calculations to infer semi-empirical values of the overshooting parameter αov for each star. Our models use the common prescription for the overshoot distance dovovHp, where Hp is the pressure scale height at the edge of the convective core as given by the Schwarzschild criterion, and αov is a free parameter.
Results. We find a relation between αov and mass, which is defined much more clearly than in previous work, and indicates a significant rise up to about 2M followed by little or no change beyond this mass. No appreciable dependence is seen with evolutionary state at a given mass, or with metallicity at a given mass although the stars in our sample span a range of a factor of ten in [Fe/H], from -1.01 to +0.01.

Abstract Copyright: © ESO, 2016

Journal keyword(s): stars: interiors - stars: evolution - binaries: eclipsing

Simbad objects: 36

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Number of rows : 36
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 OGLE SMC130.5 4296 EB* 00 33 47.9299552248 -73 04 28.056762084 18.39 18.09 16.99   15.55 ~ 14 0
2 OGLE J004402.68-725422.5 EB* 00 44 02.6740281360 -72 54 22.960574820 18.63 17.85 16.65   15.45 ~ 15 0
3 * 21 Cas EB* 00 45 39.0765692400 +74 59 17.054172672   5.717 5.652     A2IV 212 0
4 OGLE J004822.69-724848.6 EB* 00 48 22.6937097888 -72 48 48.976132716   17.94 17.17 16.81 16.22 ~ 18 0
5 NAME SMC G 00 52 38.0 -72 48 01   2.79 2.2     ~ 11137 1
6 OGLE SMC-SC8 201484 EB* 01 00 18.0420727800 -72 24 07.781696460   16.07 15.21 14.69 14.21 ~ 17 0
7 OGLE SMC725.12.000065 EB* 01 06 10.3381691472 -72 06 25.181596584     15.769 15.16 14.702 ~ 18 0
8 V* AI Phe SB* 01 09 34.1924055096 -46 15 56.071719360   9.26 8.60     G3V 147 0
9 OGLE LMC-ECL-1866 EB* 04 52 15.2769484488 -68 19 10.222622148     15.986 15.453 15.010 ~ 20 0
10 OGLE LMC-CEP-227 cC* 04 52 15.6979950672 -70 14 31.242378408     15.317   14.438 ~ 57 0
11 OGLE LMC-ECL-3160 LP* 04 55 51.4783969128 -69 13 47.925605388     16.83 15.978 15.869 ~ 25 0
12 2MASS J05043288-6920509 LP* 05 04 32.8759490616 -69 20 51.030442032     15.62 14.736 14.659 ~ 23 0
13 OGLE J051019.64-685812.3 EB* 05 10 19.65 -68 58 12.0     16.673   15.715 ~ 30 0
14 OGLE LMC-ECL-9144 EB* 05 10 23.30 -69 00 35.3     19.291   19.209 ~ 6 0
15 2MASS J05114945-6705451 LP* 05 11 49.4660106384 -67 05 45.128063004     16.21 15.70 15.130 ~ 20 0
16 2MASS J05140190-6841184 LP* 05 14 01.908 -68 41 18.41     16.58 16.04 15.377 ~ 20 0
17 2MASS J05140595-6915568 LP* 05 14 05.9513254032 -69 15 56.782018224     16.56 15.639   ~ 21 1
18 * alf Aur SB* 05 16 41.35871 +45 59 52.7693 1.33 0.88 0.08 -0.52 -0.96 G3III: 1177 0
19 NAME LMC G 05 23 34.6 -69 45 22     0.4     ~ 17418 0
20 2MASS J05252555-6933044 LP* 05 25 25.550 -69 33 04.49     17.01 16.40 15.620 ~ 25 0
21 OGLE LMC-CEP-2532 cC* 05 36 04.4840776752 -70 01 55.503299928     16.88 16.23 15.743 F4II+K1III-II 25 0
22 HD 38735 SB* 05 47 26.8930346587 -10 31 58.690687745   6.23 6.09     A2IV 119 0
23 OGLE LMC-CEP-4506 cC* 05 53 29.3579289240 -67 53 59.361341352     15.459   14.778 ~ 23 0
24 OGLE LMC-ECL-25658 EB* 06 01 58.7793442320 -68 30 55.138566096     16.995 16.53 15.870 G8III+G9III 16 0
25 V* AI Hya EB* 08 18 47.4972221712 +00 17 00.612058128   9.77 9.35     F2m+F0V 113 0
26 V* AY Cam SB* 08 25 51.7866730824 +77 13 06.845960820   10.12 9.72     A0V+F0V 62 0
27 * chi02 Hya EB* 11 05 57.5699938080 -27 17 16.272708396   5.64 5.71     B8V 115 0
28 V* VV Crv EB* 12 41 15.9525645216 -13 00 50.036265504   6.26 5.843     F6III 86 0
29 V* HY Vir SB* 13 08 29.9195499048 -02 40 44.387751432   8.28 7.86     kA8hF3mF5(II-III) 50 0
30 V* SZ Cen EB* 13 50 35.0928355776 -58 29 57.097515840   8.89 8.59     A6III 102 0
31 V* V885 Cyg EB* 19 32 49.8555086064 +30 01 16.981505544   10.20 9.99     Am+Am 44 0
32 V* V380 Cyg EB* 19 50 37.3267754400 +40 35 59.135141652 4.86 5.613 5.680     B1.1III+B2.5/3V: 291 0
33 HD 187669 EB* 19 52 22.0878263112 -32 33 39.740568048   10.12 8.88     K0III 24 0
34 V* EI Cep SB* 21 28 28.2054524664 +76 24 12.585894552   7.94 7.61     F3V+F1m 132 0
35 V* WX Cep SB* 22 31 15.7881709512 +63 31 21.554196312   9.38 9.00     A5V+A2V 107 0
36 V* V364 Lac SB* 22 52 14.8100362992 +38 44 44.634368292   8.54 8.36     A4m+A3m 93 0

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