2007A&A...475.1019C


Query : 2007A&A...475.1019C

2007A&A...475.1019C - Astronomy and Astrophysics, volume 475, 1019-1025 (2007/12-1)

Does convective core overshooting depend on stellar mass? Tests using double-lined eclipsing binaries.

CLARET A.

Abstract (from CDS):

We have selected 13 double-line eclipsing binary systems (DLEBS), strategically positioned in the HR diagram, to infer the mass dependence of the core overshooting parameter αov. In order to compare the data from these DLEBS with the theoretical predictions we computed four grids of evolutionary stellar models with variable amounts of core overshooting (αov=0.0, 0.2, 0.4, and 0.6) in addition to those previously computed. In some particular cases specific models were computed for the precise observed masses. This procedure avoids interpolations and extrapolations, and only considers chemical compositions within the limits of the usual primordial helium abundance and enrichment law. We used the ratio TR=Teff2/Teff1 instead of the effective temperatures themselves as we consider it a much better constrained parameter. This is because it is directly derived from the analysis of light curves and is independent of calibrations, distances, and model atmospheres. In contrast to previous studies on the subject, we have found that standard models or models with moderate core overshooting (αov≃0.2) are able to match the absolute dimensions of key DLEBS such as V380 Cyg or V453 Cyg. The resulting logM-αov diagram indicates that the dependence of αov on mass is more uncertain and less pronounced that previously established. This result is also consistent with the analysis of colour-magnitude diagrams for clusters and with previous comparisons of stellar models with larger samples of DLEBS.

Abstract Copyright:

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

Simbad objects: 27

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Number of rows : 27
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 * 21 Cas EB* 00 45 39.0765692400 +74 59 17.054172672   5.717 5.652     A2IV 212 0
2 * mu. Cas SB* 01 08 16.3029454473 +54 55 12.561201263 5.93 5.86 5.17 4.55 4.13 G5Vb 571 1
3 NGC 752 OpC 01 56 53.5 +37 47 38           ~ 642 0
4 V* TZ For SB* 03 14 40.0925678952 -35 33 27.594929088   7.620 6.878     F7III+G8III 133 0
5 SV* HV 2274 EB* 05 02 40.7809489608 -68 24 21.495338172 13.298 13.984 14.127 14.192 14.390 ~ 77 0
6 HD 38735 SB* 05 47 26.8930346587 -10 31 58.690687745   6.23 6.09     A2IV 119 0
7 V* AI Hya EB* 08 18 47.4972221712 +00 17 00.612058128   9.77 9.35     F2m+F0V 113 0
8 NGC 2682 OpC 08 51 23.0 +11 48 50           ~ 2342 0
9 * 163 Car EB* 09 54 33.8842758792 -58 25 16.579713612 5.6 6.47 6.64     B2V 121 0
10 * chi02 Hya EB* 11 05 57.5699938080 -27 17 16.272708396   5.64 5.71     B8V 115 0
11 V* EM Car EB* 11 12 04.5060592584 -61 05 42.944560584 8.06 8.80 8.54 9.25   O7.5V((f))+O7.5V((f)) 164 0
12 NGC 3680 OpC 11 25 34.1 -43 14 24   8.40 7.6     ~ 319 0
13 * alf Vir bC* 13 25 11.57937 -11 09 40.7501 -0.20 0.74 0.97 1.06 1.30 B1V 855 2
14 V* SZ Cen EB* 13 50 35.0928355776 -58 29 57.097515840   8.89 8.59     A6III 102 0
15 V* V760 Sco EB* 16 24 43.7182304928 -34 53 37.529154204   7.16 7.05     B4V 168 0
16 V* U Oph EB* 17 16 31.7137908168 +01 12 37.998551304   5.941 5.921     B3V 380 1
17 IC 4651 OpC 17 24 50.9 -49 55 01           ~ 350 0
18 NGC 6475 OpC 17 53 47.3 -34 50 28           ~ 384 0
19 V* V906 Sco EB* 17 53 54.7731227 -34 45 09.785378   5.95 5.96     B9V+B9V 122 0
20 * 11 Sgr Or* 18 09 17.6999100192 -23 59 18.231196056 6.65 7.45 7.31 8.36   O7V(n)z+B0:V: 140 2
21 V* V451 Oph EB* 18 29 14.0426779320 +10 53 31.429623012   7.95 7.91     A0IV 165 0
22 V* DI Her EB* 18 53 26.2399243224 +24 16 40.792648332   8.46 8.47     B5III 265 0
23 V* V380 Cyg EB* 19 50 37.3267754400 +40 35 59.135141652 4.86 5.613 5.680     B1.1III+B2.5/3V: 292 0
24 NGC 6871 OpC 20 06 11.5 +35 45 54   5.43 5.2     ~ 225 0
25 V* V453 Cyg EB* 20 06 34.9661707872 +35 44 26.269865844 7.83 8.52 8.40     B0.4IV+B0.7IV 206 0
26 V* Y Cyg SB* 20 52 03.5771840640 +34 39 27.486121104 6.31 7.23 7.32     O9.5IV+O9.5IV 371 1
27 V* WX Cep SB* 22 31 15.7881709512 +63 31 21.554196312   9.38 9.00     A5V+A2V 107 0

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