1999A&A...348..487R


Query : 1999A&A...348..487R

1999A&A...348..487R - Astronomy and Astrophysics, volume 348, 487-500 (1999/8-2)

Lithium in population I subgiants.

RANDICH S., GRATTON R., PALLAVICINI R., PASQUINI L. and CARRETTA E.

Abstract (from CDS):

We present a lithium survey for a sample of 91 Pop. I stars. JHKL photometry was also obtained for 61 stars in the sample. Besides Li abundances, [Fe/H] values were derived. Thanks to Hipparcos parallaxes, we could infer absolute V magnitudes for our sample stars and were able to place them on the color-magnitude diagram, which allowed us to constrain their evolutionary status. Masses and ages were derived for most of the stars by comparison with evolutionary tracks. The sample was originally selected so to include class IV stars later than spectral-type F0, but, based on the location on the color-magnitude diagram, we found a posteriori that a fraction of the stars (about 20%) are either main sequence stars or evolved giants. As it is the case for dwarfs and giants, a large spread in lithium abundance is present among the subgiants in our sample. As expected, the average lithium decreases as the stars evolve along the subgiant branch; however, there is not a one-to-one relationship between the position on the color-magnitude diagram and lithium abundance, and the observed dispersion is only partially explainable as due to a dispersion in mass, metallicity, and age. In particular, a dispersion in lithium is seen among slightly evolved subgiants with masses close to solar but in the same evolutionary stage as the G2 IV star β Hyi. The comparison of the β Hyi-like sample with a sample of non evolved solar-like stars indeed suggests that β Hyi has most likely evolved from a main sequence Li-rich star, rather than from a Li-poor star (like the Sun) that has dredged-up previously stored lithium. Our sample includes several stars that have completed the first-dredge up lithium dilution, but that have not yet evolved to the evolutionary point where extra-mixing in the giant phase is thought to occur. A large number of them have Li abundances considerably below the theoretical predictions of first dredge-up dilution. We confirm that this is due to the fact that the progenitors of these stars are most likely stars that have depleted lithium while on the main sequence; the fraction of post-dredge up Li rich/poor stars, in fact, is consistent with the observed distribution of Li abundances among stars that have just left the main sequence. The signature of the second mixing (or RGB extra-mixing) episode is evident in the log n(Li) vs. B-V and log n(Li) vs. Mbol distributions of the stars in the sample; it seems however that the extra-mixing occurs at luminosities lower than predicted by the models of Charbonnel (1994). Finally, a few evolved giants are found that should have passed the second mixing episode, but that do not show signs of it. At least half of them are spectroscopic binaries.

Abstract Copyright:

Journal keyword(s): stars: abundances - stars: fundamental parameters - stars: late-type

Simbad objects: 94

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Number of rows : 94
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 224750 ** 00 00 19.09514 -44 17 26.0255       7.36   G3IV 29 0
2 HD 142 PM* 00 06 19.1753245111 -49 04 30.671249608   6.30 5.76     F7V 250 1
3 HD 469 ** 00 09 02.3930869080 -54 00 07.038806868   7.07 6.33     G8III+A/F 42 0
4 HD 645 RG* 00 10 42.8341071816 -12 34 47.633650356   6.861 5.849     K0III 62 0
5 * bet Hyi PM* 00 25 45.07036 -77 15 15.2860 3.52 3.41 2.79 2.28 1.94 G0V 592 0
6 HD 3303 PM* 00 35 33.3389732928 -54 49 18.738166440   7.055 6.052     K0IV 28 0
7 HD 6269 PM* 01 03 17.6938658208 -29 31 33.047362776   7.213 6.283     G8IIICNIV 41 0
8 HD 8779 PM* 01 26 27.3469188696 -00 23 56.516227080   7.684 6.426     K1III 59 0
9 HD 9562 PM* 01 33 42.8357181696 -07 01 31.238801760 6.61 6.40 5.76     G1V 263 0
10 HD 10142 PM* 01 38 27.4839019872 -36 31 41.700679932   6.991 5.939     K0III 48 0
11 HD 11332 PM* 01 50 20.1816024384 -47 48 59.006356704   7.144 6.140     K0III 25 0
12 HD 12583 RG* 02 02 58.5696126264 -15 18 21.348597708   6.833 5.864     K0II/III 52 0
13 * 64 Cet PM* 02 11 21.0787585632 +08 34 11.305868808   6.189 5.623 6.81   G0IV 120 0
14 HD 16589 SB* 02 38 24.8352281208 -37 59 25.962942444   6.995 6.483     F6V 54 0
15 HD 18262 PM* 02 56 13.7672430696 +08 22 53.623894908   6.431 5.963     F6III-IVs 83 0
16 * eps For PM* 03 01 37.6288785045 -28 05 29.373792325   6.68 5.85     G9:V 185 0
17 HD 19826 PM* 03 10 35.3816938080 -23 44 18.647981736   7.320 6.377     G9III-IV 38 0
18 HD 26913 BY* 04 15 25.7871375264 +06 11 58.751401236 7.790 7.580 6.920 6.554 6.195 G8V 218 0
19 HD 26923 PM* 04 15 28.8004060272 +06 11 12.698572488 6.910 6.860   5.9   G0IV 214 0
20 * eps Ret PM* 04 16 29.0281470260 -59 18 07.755891304 6.59 5.52 4.44 3.62 3.08 K2III 238 1
21 HD 29613 RG* 04 39 19.7106414840 -14 21 33.082104168   6.510 5.463     K0.5IVa 63 0
22 * zet Cae PM* 04 47 49.5770927616 -30 01 13.339845156   7.432 6.346     K0III 26 0
23 * omi Col PM* 05 17 29.0887389637 -34 53 42.722762056 6.62 5.83 4.83 4.09 3.54 K1IV 88 0
24 HD 36553 PM* 05 30 09.4789496328 -47 04 39.556146828   6.065 5.453     F8/G2 49 0
25 HD 37501 * 05 34 57.4327590840 -61 10 33.775355712   7.158 6.311     G6III 28 0
26 HD 39937 PM* 05 52 20.2014186048 -57 09 22.281455484   6.582 5.948     F7IV 50 0
27 HD 40105 PM* 05 54 10.8131651260 -50 21 45.180883659   7.42 6.52     K1IV-V 80 0
28 HD 41700 SB* 06 04 28.4392966104 -45 02 11.772746376   6.87 6.35     F8V 102 0
29 HD 50806 PM* 06 53 33.9425265992 -28 32 23.259823557   6.75 6.04     G5V 155 0
30 HD 51825 ** 06 57 17.58427 -35 30 25.7579   6.670 6.224     F5V 83 0
31 HD 62644 ** 07 42 57.0956033291 -45 10 23.215489084   5.84 5.04     G8IV-V 120 0
32 HD 66011 * 08 01 50.7295370880 +08 54 50.369164956   6.777 6.209     G0IV 74 0
33 HD 72954 ** 08 34 31.9561004136 -32 35 55.553700156   7.162 6.41     G5V 53 1
34 NGC 2682 OpC 08 51 23.0 +11 48 50           ~ 2342 0
35 HD 80170 * 09 16 57.0762015552 -39 24 05.536849500   6.473 5.304     K2III 70 0
36 HD 82074 PM* 09 29 32.4156232920 -04 14 47.889583512   7.101 6.257     G8III/IV 59 0
37 HD 82734 * 09 33 12.4598609496 -21 06 56.603996244   6.027 5.003     K0III 99 0
38 HD 85655 PM* 09 51 12.0754130112 -59 25 32.796483996   7.133 5.778     K2IIICNIV/Vp 33 0
39 HD 90170 PM* 10 23 40.6242776112 -41 57 11.489962536   7.151 6.242     G8IV 31 0
40 * 33 Sex PM* 10 41 24.1859419344 -01 44 29.371097184   7.145 6.250     G9IV 170 0
41 HD 94386 PM* 10 53 32.9043572760 -15 26 45.008353068   7.546 6.340     K2III 39 0
42 * 83 Leo A PM* 11 26 45.3217299671 +03 00 47.156637705 7.78 7.28 6.46 6.0   G9IV-V 238 0
43 * 83 Leo ** 11 26 45.8 +03 00 35 7.63 7.01 6.16     ~ 211 0
44 HD 100219 ** 11 31 47.5525869864 -20 46 35.301912780   6.753 6.228     F8V 57 0
45 HD 104055 PM* 11 59 03.3373740552 +00 31 50.448886860   7.440 6.176     K2/3III 39 0
46 HD 104307 * 12 00 42.2218184568 -21 50 14.990221068   7.491 6.255     K2III 40 0
47 HD 107773 PM* 12 23 13.8898713539 -67 37 53.572986625   7.25 6.39     G8/K0IV 50 0
48 HD 114837 PM* 13 14 15.1447379904 -59 06 11.654027964 5.35 5.41 4.93 4.48 8.83 F6VFe-0.4 131 0
49 HD 120237A PM* 13 48 55.0652037503 -35 42 15.049233110   7.11 6.56 6.44   F9V 93 0
50 HD 121056 RG* 13 53 52.0613118474 -35 18 51.691786471   7.21 6.19     K0III 76 0
51 HD 121384 PM* 13 56 32.9436065448 -54 42 16.783257240   6.78 6.01     G8VCH+0.3CaIwk 97 0
52 HD 125184 PM* 14 18 00.7266638905 -07 32 32.612570668   7.20 6.50     G5/6V 169 0
53 HD 126400 ** 14 25 47.7686676792 -26 51 08.073760932   7.444 6.487     K0III 30 0
54 * phi Vir PM* 14 28 12.1389021744 -02 13 40.649015856   5.522 4.840     G2IV 191 0
55 HD 140301 PM* 15 43 24.8586962328 -15 02 35.628644976   7.405 6.295     K0III 42 0
56 HD 144585 PM* 16 07 03.3696573456 -14 04 16.671141984 7.22 6.98 6.32     G2V 191 0
57 HD 145148 PM* 16 09 11.2150771435 +06 22 43.289900623   6.97   5.3   K1.5IV 176 0
58 CD-29 12513A PM* 16 24 39.7741088568 -29 42 16.785116136   6.40 5.82     F9IV 43 0
59 HD 152781 PM* 16 56 01.8439567752 -16 48 22.555898568   7.292 6.336     K0/1III/IV 39 0
60 HD 154556 PM* 17 12 19.9342187184 -70 43 15.896336232   7.286 6.214     K1IVCNIII 24 0
61 HD 155974 PM* 17 16 21.6025357545 -35 45 01.073726326   6.60 6.12     F5.5V 80 0
62 HD 156846 PM* 17 20 34.3108875144 -19 20 01.491746388 7.20 7.10 6.52     G1V 113 1
63 HD 157347 PM* 17 22 51.2877087336 -02 23 17.439450684   6.965 6.278     G3V 202 0
64 * mu. Ara PM* 17 44 08.7031414872 -51 50 02.591603160   5.85 5.15     G3IV-V 531 2
65 HD 165438 RG* 18 06 15.1971057528 -04 45 04.508774964   6.726 5.741     K1IV 77 0
66 HD 165978 PM* 18 09 59.9637881232 -32 43 10.688270124   7.435 6.405     K0III 24 0
67 HD 166599 * 18 15 40.6145646768 -63 03 19.310091408   6.531 5.582     K0III/IV 23 0
68 * 18 Sgr EB* 18 25 01.4272703880 -30 45 23.616748152   6.696 5.574     K0III 25 0
69 HD 170525 PM* 18 33 29.4704183053 -58 42 31.599991540   7.12 6.44     G3/5V 45 0
70 HD 172223 PM* 18 41 30.6798758424 -48 05 40.881324912   7.685 6.454     K2III/IVCNII 20 0
71 HD 173902 PM* 18 49 17.1708463368 -34 44 57.042810816   7.70 6.60     K2IVCNIII 20 0
72 HD 177565 PM* 19 06 52.4643890878 -37 48 38.373405467   6.88 6.16     G6V 178 0
73 HD 177389 PM* 19 09 52.8681101376 -68 25 28.018058124   6.205 5.305     K0IV 41 0
74 * bet Aql PM* 19 55 18.7928429719 +06 24 24.351242346 5.040 4.560 3.710 3.05 2.56 G8IV 552 0
75 * 64 Aql RG* 20 08 01.8223368384 -00 40 41.464645428   7.003 5.968     K1III/IV 53 0
76 HD 194433 ** 20 26 52.94950 -37 24 10.4610           K2IV+K1V 47 0
77 HD 195564 PM* 20 32 23.6946897472 -09 51 12.184220381   6.34 5.65     G2.5IV 157 0
78 * kap Del PM* 20 39 07.7867477765 +10 05 10.291671448   5.77   4.6   G2IV 197 0
79 HD 199223 ** 20 55 40.67814 +04 31 57.7969   6.87 6.05     K0III+F/G 44 0
80 HD 200011 SB* 21 02 12.7230325296 -43 00 07.721990892 7.49 7.32 6.64     F8/G0V 48 0
81 HD 200073 RG* 21 02 27.1654626504 -38 31 51.490444404   7.05 5.94     K2III 31 0
82 HD 202773 PM* 21 18 54.1794000408 -28 45 56.947993092   7.37 6.40     K0IV 19 0
83 HD 210434 PM* 22 10 33.7470786144 -04 16 00.678794592   6.959 5.980     G8/K0III 50 0
84 * tet Aqr PM* 22 16 50.0366846016 -07 46 59.839473115 5.95 5.15 4.16 3.46 2.98 G9II 141 0
85 HD 212330 PM* 22 24 56.3686693520 -57 47 50.841196599 6.09 5.96 5.31 4.79 4.40 G2IV-V 142 0
86 HD 214599 PM* 22 39 44.1846716256 -28 19 32.374717392   7.315 6.314     K0/1III 26 0
87 * sig Peg PM* 22 52 24.0744611045 +09 50 08.394417666   5.64   4.9   F6V 278 0
88 * rho Ind PM* 22 54 39.4819393536 -70 04 25.352060772 6.95 6.71 6.05     G1VFe+0.3 191 1
89 HD 216718 ** 22 55 10.9616331648 -04 59 16.449139284   6.626 5.757     K1III 63 0
90 HD 217107 ** 22 58 15.5408995872 -02 23 43.383234768   6.919 6.163     G8IV/V 368 1
91 HD 217703 PM* 23 02 44.2505067936 -20 52 14.562297516   6.946 5.976     K0III 25 0
92 * 94 Aqr SB* 23 19 06.7191981624 -13 27 31.825994400   5.95 5.18     G8.5IV 219 0
93 HD 223524 PM* 23 50 14.7296609856 -09 58 26.893348608   7.069 5.936     K1III 59 0
94 HD 224022 PM* 23 54 38.6211470319 -40 18 00.221877716   6.60 6.03     G0V 91 0

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