2000A&A...354..169G


Query : 2000A&A...354..169G

2000A&A...354..169G - Astronomy and Astrophysics, volume 354, 169-187 (2000/2-1)

Mixing along the red giant branch in metal-poor field stars.

GRATTON R.G., SNEDEN C., CARRETTA E. and BRAGAGLIA A.

Abstract (from CDS):

We have determined Li, C, N, O, Na, and Fe abundances, and 12C/13C isotopic ratios for a sample of 62 field metal-poor stars in the metallicity range -2≤[Fe/H]≤-1. Stars were selected in order to have accurate luminosity estimates from the literature, so that evolutionary phases could be clearly determined for each star. We further enlarged this dataset by adding 43 more stars having accurate abundances for some of these elements and similarly well defined luminosities from the literature. This large sample was used to show that (small mass) lower-RGB stars (i.e. stars brighter than the first dredge-up luminosity and fainter than that of the RGB bump) have abundances of light elements in agreement with predictions from classical evolutionary models: only marginal changes occur for CNO elements, while dilution within the convective envelope causes the surface Li abundance to decrease by a factor of ∼20. A second, distinct mixing episode occurs in most (perhaps all) small mass metal-poor stars just after the RGB bump, when the molecular weight barrier left by the maximum inward penetration of the convective shell is canceled by the outward expansion of the H-burning shell, in agreement with recent theoretical predictions. In field stars, this second mixing episode only reaches regions of incomplete CNO burning: it causes a depletion of the surface 12C abundance by about a factor of 2.5, and a corresponding increase in the N abundance by about a factor of 4. The 12C/13C is lowered to about 6 to 10 (close to but distinctly higher than the equilibrium value of 3.5), while practically all remaining Li is burnt. However an O-Na anti-correlation such as typically observed amongst globular cluster stars, is not present in field stars. None of the 29 field stars more evolved than the RGB bump (including 8 RHB stars) shows any sign of an O depletion or Na enhancement. This means that the second mixing episode is not deep enough to reach regions were ON-burning occurs in field stars.

Abstract Copyright:

Journal keyword(s): stars: Hertzsprung-Russel (HR) and C-M diagrams - stars: evolution - stars: Population II - Galaxy: globular clusters: general

VizieR on-line data: <Available at CDS (J/A+A/354/169): table1.dat table2.dat table3.dat table5.dat table6.dat>

Simbad objects: 71

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Number of rows : 71
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 HD 20 Pe* 00 05 15.3242691048 -27 16 18.140091852   9.65 9.40 8.865 8.377 F2V 70 0
2 HD 2665 PM* 00 30 45.4469338728 +57 03 53.628989292 8.66 8.51 7.72     G5IIIw 177 0
3 V* CM Cet LP? 00 33 14.3108581872 -10 43 42.728423844   10.66 9.48 8.84 9.06 G3/5V 100 0
4 HD 6229 HB* 01 03 36.4558954200 +23 46 06.376430388   9.35 8.58     G5III:Sr 63 0
5 HD 6755 SB* 01 09 43.0577179701 +61 32 50.264076956 8.48 8.40   7.3   G5 240 0
6 HD 7041 PM* 01 09 49.4687740320 -56 21 21.685439844   9.82 9.04     G6/8wF8IV/V 49 0
7 HD 9051 PM* 01 28 46.5026384544 -24 20 25.442103012   9.73 8.92     G6/8IIIwF5 65 0
8 BD+29 366 PM* 02 10 24.5274364299 +29 48 23.663397433 9.27 9.35 8.77 8.24 7.85 G3 137 0
9 HD 17072 PM* 02 40 40.0947823008 -69 13 58.815073128   7.22 6.59     F9IIIm-2 56 0
10 HD 19445 PM* 03 08 25.5883873084 +26 19 51.400965175 8.29 8.52 8.06 7.60 7.27 G2VFe-3 771 0
11 HD 20038 * 03 10 26.7850308240 -58 49 40.568359872 10.16 9.74 8.91     F7wG6III 44 0
12 HD 21581 Pe* 03 28 54.4844652624 -00 25 03.107565696 9.75 9.54 8.71     G8w 127 0
13 HD 23798 Pe* 03 46 45.7220393712 -30 51 13.333194972   9.35 8.32     G8/K1(III)wF0/3 70 0
14 HD 23439A EB* 03 47 02.1135215373 +41 25 38.103867665   8.89 8.12 7.7   K2:V_Fe-1.3 240 0
15 HD 26169 Pe* 04 00 52.4379302184 -75 36 11.436994836 9.58 9.53 8.80 8.51 8.73 G3wpec 78 0
16 HD 25329 PM* 04 03 14.9979736362 +35 16 23.805785323 9.75 9.37 8.50 7.75 7.23 K1VbFe-2 366 0
17 HD 26297 Pe* 04 09 03.4178692512 -15 53 27.056905800   8.55 7.47 7.09   G5/6IVw 158 0
18 BD+06 648 Pe* 04 13 13.1126763288 +06 36 01.768985496   10.27 9.09 8.58   K0 106 0
19 HD 36702 Pe* 05 31 52.2291576648 -38 33 24.045172128   9.53 8.38     F0wG/K 76 0
20 HD 41667 PM* 06 05 03.6441903504 -32 59 38.727053880   9.49 8.52     G8V 48 0
21 BD+37 1458 Pe* 06 16 01.5222885381 +37 43 18.754343426 9.41 9.52 8.92 8.34 7.91 G0 140 0
22 HD 44007 Pe* 06 18 48.5269024752 -14 50 43.423248948   8.85 8.06 7.69   G5(IV)wF3/5 185 0
23 HD 45282 Pe* 06 26 40.7720940072 +03 25 29.792391024 8.71 8.69 8.03     Gwl 154 0
24 HD 64090 Pe* 07 53 33.1208795337 +30 36 18.256204963 8.75 8.86 8.25 7.70 7.30 K0:V_Fe-3 359 0
25 HD 74462 RG* 08 48 20.6518818744 +67 26 59.884515744   9.65 8.69 8.25   G5IV 132 0
26 HD 83212 Pe* 09 36 19.9521173088 -20 53 14.747509716   9.582 9.177 7.83   G6/K0IIIwF7 132 0
27 HD 87140 PM* 10 04 43.1808079344 +54 20 43.425537648 9.70 9.68 8.98     K0 112 0
28 HD 93529 Pe* 10 47 29.0132337552 -25 26 14.585676108   10.08 9.31 8.92   G6/8w 61 0
29 HD 94028 PM* 10 51 28.1256073369 +20 16 38.965439278 8.51 8.69 8.22 7.82 7.54 F8 361 0
30 HD 102200 Pe* 11 45 34.2345453384 -46 03 46.386995400   9.13 8.76     F2V 113 0
31 HD 103095 Pe* 11 52 58.7673387755 +37 43 07.254113125 7.38 7.20 6.45 5.80 5.35 K1V_Fe-1.5 802 1
32 HD 105546 HB* 12 09 02.7215671248 +59 01 05.137388976   9.27 8.61 8.29   G2III: 115 0
33 HD 110885 * 12 45 19.2564778992 +01 03 21.095763876   9.76 9.12     F3V 59 0
34 HD 111721 RG* 12 51 25.1948519215 -13 29 28.166947989   8.78 7.97     G6V 163 0
35 HD 116064 Pe* 13 21 43.7779908364 -39 18 40.025179966   9.26 8.8     F9IV-Vm-5 133 0
36 HD 118055 Pe* 13 34 39.9107087448 -16 19 22.711497564   10.10 8.89 8.45   K0wF8 85 0
37 HD 122956 Pe* 14 05 13.0244442888 -14 51 25.455804480   8.18 7.3 6.88   G6IV/VwF6 156 0
38 HD 126238 Pe* 14 25 29.9571431040 -43 38 36.948515460   8.44 7.7 7.44   G3/8wF0/2 111 0
39 HD 128279 Pe* 14 36 48.5108525999 -29 06 46.612858494 8.64 8.63 8.00     Gw 194 0
40 HD 132475 PM* 14 59 49.7651173448 -22 00 45.815162806 8.98 9.11 8.55     F5/6V 240 1
41 BD+30 2611 Pe* 15 06 53.8282684752 +30 00 36.941373756 11.50 10.37 9.13     G8III 141 0
42 HD 134439 PM* 15 10 13.0873110544 -16 22 45.877317625 10.03 9.837 9.066 8.604 8.160 sd:K1Fe-1 325 0
43 HD 135148 SB* 15 13 17.4566472168 +12 27 25.533915552   10.87 9.39 8.97   CEMP-s 94 0
44 HD 136316 PM* 15 22 17.9431633296 -53 14 15.206658000   8.77 7.65     G0/2IV/V 56 0
45 HD 141531 PM* 15 49 16.4993243976 +09 36 42.408069804   10.31 9.08 8.720   M1V 70 0
46 HD 142948 * 16 00 02.4133504248 -53 51 05.401576152   8.96 8.03     G5III/IV 49 0
47 HD 145417 PM* 16 13 48.5588453721 -57 34 13.843989664 8.663 8.365 7.540 7.054 6.588 K3VFe-1.7 163 0
48 HD 151559 * 16 49 08.1181156728 -27 34 14.844148284   9.75 8.91     G1wG5/6(IV) 23 0
49 M 92 GlC 17 17 07.39 +43 08 09.4     6.52     ~ 2116 0
50 NGC 6397 GlC 17 40 42.09 -53 40 27.6     5.17     ~ 1976 0
51 HD 160617 Pe* 17 42 49.3234249010 -40 19 15.503834657   9.18 8.7 8.394 8.065 G0 204 0
52 HD 166161 PM* 18 09 40.6841536776 -08 46 45.603012144 9.53 9.13 8.16     G0wF0 142 0
53 HD 175305 RG* 18 47 06.4416868934 +74 43 31.451436187 8.07 7.93 7.18 6.52 6.03 G5III 220 0
54 HD 184266 HB* 19 34 15.3865887336 -16 19 00.228534420 8.27 8.12 7.57     F2V 122 0
55 HD 187111 Pe* 19 48 39.5744746680 -12 07 19.738101036   8.92 7.75     G8wF8III/IV 142 0
56 HD 190287 PM* 20 05 38.2682394768 -34 55 11.942867100   9.23 8.54     G6Vw 61 0
57 HD 345957 PM* 20 10 48.1625876064 +23 57 54.510596568   9.36   8.6   G0V: 143 0
58 HD 193901 PM* 20 23 35.8471605389 -21 22 14.226959304 9.08 9.22 8.67 8.17 7.87 F7V 280 0
59 HD 194598 PM* 20 26 11.9183775668 +09 27 00.429558608 8.62 8.82 8.34 7.90 7.56 F8 302 0
60 HD 196892 PM* 20 40 49.3802982816 -18 47 33.282293972   8.73 8.23     F6V 128 0
61 HD 199289 PM* 20 58 08.5239126371 -48 12 13.459812756   8.82 8.30     F5V 122 0
62 HD 201891 Pe* 21 11 59.0321495469 +17 43 39.890919730 7.74 7.88 7.37 6.91 6.59 G5V_Fe-2.5 393 0
63 M 15 GlC 21 29 58.33 +12 10 01.2           ~ 3140 0
64 * nu. Ind ** 22 24 36.8853892493 -72 15 19.488237466   5.94 5.29     G9VFe-3.1CH-1.5 276 0
65 HD 213467 PM* 22 32 07.8972271497 -31 10 24.951994897   9.26 8.58     G5VwF3 60 0
66 HD 215601 PM* 22 46 48.0939888480 -31 52 19.355487852   9.23 8.49     G6/8wF3 44 0
67 HD 217272 * 23 00 16.2539421864 -52 49 18.896494584   10.21 9.04     G6wF8 21 0
68 HD 219617 ** 23 17 05.04375 -13 51 03.5971 8.41 8.60 8.14 7.70 7.37 F8 309 0
69 HD 221580 PM* 23 33 40.1543223408 -53 39 29.293955892   9.86 9.21     G8/K1wF 42 0
70 HD 222434 SB* 23 40 41.5098598776 -34 41 46.553906400   9.85 8.81     G2/3V 54 0
71 HD 222925 Pe* 23 45 17.6074777008 -61 54 42.835286016   9.56 9.03     ApSrEu 58 0

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