2006A&A...449..655S


Query : 2006A&A...449..655S

2006A&A...449..655S - Astronomy and Astrophysics, volume 449, 655-671 (2006/4-2)

CNO in evolved intermediate mass stars.

SMILJANIC R., BARBUY B., DE MEDEIROS J.R. and MAEDER A.

Abstract (from CDS):

In order to investigate the possible influence of rotation on the efficiency of the first dredge-up we determined atmospheric parameters, masses, and abundances of carbon, nitrogen, and oxygen in a sample of evolved intermediate mass stars. We used high resolution spectra and conducted a model atmosphere analysis. The abundances were calculated through spectral synthesis and compared to the predictions of rotating and non-rotating evolutionary models. Almost all those objects in our sample where carbon and nitrogen abundances could be determined show signs of internal mixing. The stars, however, seem to be mixed to different extents. Among the mixed stars we identify five in our sample with abundances in agreement with the non-rotating models, four stars that seem to be mixed beyond that, and one star that seems to be slightly less mixed than predicted for the first dredge-up. There are also five stars that seem to be slightly more mixed than expected, but their abundances are in marginal agreement with both rotating and non-rotating models. Such differences in the extent of the mixing are not predicted by the standard models and imply the action of other mixing mechanisms than solely the convective dredge-up. We also identified for the first time an important correlation between the [N/C] ratio and the stellar mass.

Abstract Copyright:

Journal keyword(s): stars: fundamental parameters - stars: abundances - stars: supergiants - stars: rotation

Simbad objects: 22

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Number of rows : 22
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 * 3 Cet s*r 00 04 30.1187522978 -10 30 34.278904524   6.541 4.924     K3Ib 110 0
2 HD 1219 * 00 16 23.6887959936 -51 36 41.128610184   10.213 9.665     K1IV 11 0
3 HD 6130 * 01 03 37.0033959120 +61 04 29.361361008   6.51 6.00 7.04   F0II 68 0
4 HD 25291 * 04 04 27.1629402984 +59 09 19.832668272 6.10 5.63 5.12 4.62 4.24 F0II 108 0
5 * alf Lep V* 05 32 43.8161188 -17 49 20.241380 3.02 2.77 2.57 2.35 2.14 F0Ib 280 0
6 HD 38713 * 05 47 07.8044115888 -16 14 17.086172172   7.058 6.157     G8III 32 0
7 HD 44362 * 06 18 46.7864729736 -50 21 32.764837176   7.866 7.031     G1.5Ib 33 0
8 * alf Car * 06 23 57.10988 -52 41 44.3810 -0.49 -0.59 -0.74 -0.96 -1.13 A9II 447 1
9 HD 49396 * 06 45 26.0552655720 -52 12 03.325840704   7.622 6.544     G5Iab 29 0
10 HD 49068 * 06 45 43.0119485640 -20 51 09.600236172   8.71 7.43     K1.5III 88 0
11 HD 51043 * 06 52 47.0219126472 -54 05 25.208550996   7.641 6.545     G5Ib/II 23 0
12 HD 58585 * 07 25 19.9743544248 -21 58 57.321997680   6.251 6.038     A5/7II 30 1
13 HD 66190 * 08 00 19.5322509552 -45 27 25.020324648   7.867 6.599     K1Ib/II 19 0
14 HD 71181 * 08 24 07.4650216008 -45 14 09.571094700   8.76 7.62     G6Ib/II 8 0
15 HD 76860 s*r 08 56 58.5446328240 -49 40 51.681990828   8.90 7.14     K3Ib 15 0
16 * iot Car V* 09 17 05.4068572 -59 16 30.835305 2.60 2.44 2.26 2.02 1.82 A7Ib 156 0
17 HD 90289 V* 10 23 50.6307943272 -57 57 14.154649776   7.834 6.325     K4III 25 0
18 HD 102839 * 11 49 56.6154142824 -70 13 32.840828760   6.333 4.964     G6Ib 39 0
19 HD 114792 * 13 14 01.9101501024 -62 39 14.001404976 8.29 7.72 6.84 7.54   F5/6Ib 33 0
20 HD 159633 * 17 37 26.9188791048 -38 03 58.915673100   7.52 6.27     G2Ib 28 0
21 * alf01 Cap ** 20 17 38.8691281056 -12 30 29.563869708 6.14 5.34 4.27 3.49 2.94 G3Ib 136 0
22 * bet Aqr * 21 31 33.5320760349 -05 34 16.229381029 4.27 3.71 2.89 2.29 1.84 G0Ib 447 0

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