2010A&A...519A..57C


Query : 2010A&A...519A..57C

2010A&A...519A..57C - Astronomy and Astrophysics, volume 519, A57-57 (2010/9-1)

The apsidal-motion test of stellar structure and evolution: an update.

CLARET A. and GIMENEZ A.

Abstract (from CDS):

The recent revision of a sample of 94 double-lined eclipsing binaries with accurate absolute dimensions provides a set of 18 systems with eccentric orbits that are precise enough to carry out an updated apsidal motion test of stellar structure. The availability of these new high-quality observational data, together with improved stellar models, that include the latest opacities, stellar compressibility, resonances, and rotation, has triggered the comparison presented in this paper between theoretical and observed apsidal motion rates. The applicability of the adopted stellar models to the sample of eclipsing binaries with accurate absolute dimensions and eccentric orbits was checked with two classical tests of the good agreement between the predicted and observed effective temperatures of the component stars and a fit to a common isochrone of their position in the H-R diagram. For this comparison, stellar models were computed for the observed individual masses and incorporated the most recent input physics available, including the effects of rotation and convective core overshooting. The final comparison of the theoretical and observed weighted internal-structure constants k2 shows good agreement and no systematic effects. Observational evidence does not show more massive cores than predicted by the models as has been suggested, and this result is independent of the evolutionary status.

Abstract Copyright:

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

Simbad objects: 21

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Number of rows : 21
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 * zet Phe EB* 01 08 23.0805843521 -55 14 44.736015873   3.908 4.014     B6V+B9V 237 0
2 V* IQ Per EB* 03 59 44.6764997640 +48 09 04.487282712   7.77 7.73     B9 155 0
3 HD 25833A EB* 04 06 55.8286148575 +33 26 46.929071509   6.83 6.87     ~ 260 0
4 HD 25833 ** 04 06 55.8351101323 +33 26 47.009585515       7.71   B3Vn 267 0
5 V* AS Cam EB* 05 29 46.9108852512 +69 29 45.363748704   8.59 8.60     A0 161 1
6 * 163 Car EB* 09 54 33.8842758792 -58 25 16.579713612 5.6 6.47 6.64     B2V 121 0
7 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
8 V* V636 Cen EB* 14 16 57.9122377992 -49 56 42.372930480   9.70 9.09     G0V 96 0
9 V* GG Lup EB* 15 18 56.3746551072 -40 47 17.596548564   5.495 5.604 5.613   B7V 134 0
10 V* V760 Sco EB* 16 24 43.7182304928 -34 53 37.529154204   7.16 7.05     B4V 168 0
11 V* U Oph EB* 17 16 31.7137908168 +01 12 37.998551304   5.941 5.921     B3V 380 1
12 V* V539 Ara EB* 17 50 28.3930000656 -53 36 44.664776352   5.60 5.71     B2/3Vnn 181 0
13 HD 163708 SB* 17 59 13.4703104784 -36 56 19.839700356   7.155 7.089 8.09   A3III 119 0
14 V* V451 Oph EB* 18 29 14.0426779320 +10 53 31.429623012   7.95 7.91     A0IV 165 0
15 V* DI Her EB* 18 53 26.2399243224 +24 16 40.792648332   8.46 8.47     B5III 265 0
16 V* V453 Cyg EB* 20 06 34.9661707872 +35 44 26.269865844 7.83 8.52 8.40     B0.4IV+B0.7IV 206 0
17 V* V478 Cyg SB* 20 19 38.7476920032 +38 20 09.195280836   9.16 8.767     B0Vp 190 0
18 V* EK Cep SB* 21 41 21.5042268336 +69 41 34.112933916   7.95 7.89     A0V 213 0
19 HD 218066 Be* 23 04 02.2270838832 +63 23 48.722060508 7.50 7.97 7.6     B1.5Vn 284 0
20 V* PV Cas EB* 23 10 02.5750345872 +59 12 06.149248560   9.98 9.86     B6V 155 0
21 V* IT Cas SB* 23 42 01.3774276248 +51 44 36.818206584   11.57 11.23     F6 71 0

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