2000AJ....120.1056K


Query : 2000AJ....120.1056K

2000AJ....120.1056K - Astron. J., 120, 1056-1071 (2000/August-0)

Galactic [O/Fe] and [C/Fe] ratios: the influence of new stellar parameters.

KING J.R.

Abstract (from CDS):

We consider the effects of recent NLTE gravities and Fe abundances on stellar [O/Fe] and [C/Fe] ratios. The NLTE parameters greatly reduce or eliminate the well-known discrepancy between CH- and C I-based C abundances in metal-poor stars and previously seen trends of atomic-based [C/Fe] and [O/Fe] with Teff. With the NLTE parameters, the metal-poor molecular-based [C/Fe] ratio maintains its increase with declining [Fe/H]; this may also be demonstrated by the revised atomic-based ratios. [O/Fe] values derived from OH and O I features are considerably reduced and typically show improved agreement but are 0.1-0.2 dex larger than those exhibited by the Lick-Texas syndicate's recent [O I]-based giant determinations. The revised [O/Fe] ratios still show an increase down to at least [Fe/H]~-2; we suggest that recent field giant data show an increase with similar slope. Even adopting uniform NLTE parameters, study-to-study abundance differences can be significant; moreover, different NLTE studies yield differing gravities and Fe abundances even after taking Teff differences into account. Comparison of metal-poor giant gravities and cluster abundances with isochrones, trigonometric gravities, and near-turnoff cluster abundances yields conflicting indications about whether the evolved gravities might be underestimated as suggested for metal-poor dwarfs. Regardless, we argue that even extreme gravity revisions do not affect the [O/Fe]-[Fe/H] relation derived from the extant results. Combining what we believe the most reliable giant and dwarf data considered here, we find [O/Fe]=-0.184(±0.022)x[Fe/H]+0.019 with an rms scatter of only 0.13 dex; there is no indication of a break or slope change at intermediate [Fe/H]. The gentle slope is in very reasonable agreement with some chemical evolution models employing yields with small mass and metallicity dependences. Finally, two notes are made concerning Na abundance-spatial position and element-to-element correlations in M13 giants.

Abstract Copyright:

Journal keyword(s): Galaxy: Abundances - Galaxy: Halo - Stars: Abundances - Stars: Atmospheres - Stars: Distances - Stars: Fundamental Parameters - Stars: Late-Type - Stars: Population II

Simbad objects: 41

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Number of rows : 41
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 4306 SB* 00 45 27.1616035344 -09 32 39.785396712 9.80 9.75 9.02 8.75   G3/5w(A) 159 0
2 HD 6755 SB* 01 09 43.0577179701 +61 32 50.264076956 8.48 8.40   7.3   G5 240 0
3 HD 8724 RG* 01 26 17.5946147784 +17 07 35.123889432   9.29 8.34     G5 121 0
4 HD 21581 Pe* 03 28 54.4844652624 -00 25 03.107565696 9.75 9.54 8.71     G8w 127 0
5 CD-24 1782 Pe* 03 38 41.4850201416 -24 02 50.292102948   10.54 9.97 9.246 8.811 ~ 81 0
6 HD 25532 HB* 04 04 11.0091849504 +23 24 27.103671072   8.87 8.24     F6IV-V 126 0
7 HD 37828 Pe* 05 40 54.6448450584 -11 12 00.189470088   7.988 6.869     G8III 101 0
8 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
9 HD 44007 Pe* 06 18 48.5269024752 -14 50 43.423248948   8.85 8.06 7.69   G5(IV)wF3/5 185 0
10 HD 48938 PM* 06 44 51.9521598096 -27 20 30.001293240   6.99 6.43     G0VFe-0.8CH-0.5 136 0
11 HD 59984 PM* 07 32 05.7629164512 -08 52 52.775251032   6.431 5.916     G0VFe-1.6CH-0.5 216 0
12 * alf CMi SB* 07 39 18.11950 +05 13 29.9552 0.82 0.79 0.37 -0.05 -0.28 F5IV-V+DQZ 1864 0
13 * 171 Pup PM* 07 45 34.9212542040 -34 10 21.185626324   5.909 5.362     F9V 300 0
14 HD 76932 PM* 08 58 43.9327642391 -16 07 57.817644364 6.47 6.39 5.86     G2VFe-1.8CH-1 404 0
15 * tet UMa PM* 09 32 51.4309337983 +51 40 38.333310508 3.67 3.64 3.18 2.74 2.47 F7V 413 0
16 HD 85773 Pe* 09 53 39.2426826504 -22 50 08.424342096   10.51 9.43     Gwl: 98 0
17 HD 89707 SB* 10 20 49.9823777315 -15 28 47.688646996   7.74 7.19     G2VFe-1.5CH-0.8 137 0
18 HD 93529 Pe* 10 47 29.0132337552 -25 26 14.585676108   10.08 9.31 8.92   G6/8w 61 0
19 HD 98553 PM* 11 20 11.5954121232 -19 34 40.467580428   8.10 7.53     G2VFe-0.7 89 0
20 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
21 HD 108317 Pe* 12 26 36.8319587208 +05 18 09.023783400       7.7   G2IVm-5 166 0
22 HD 115444 Pe* 13 16 42.4590842616 +36 22 52.692135420   9.77 8.97 8.3 7.88 G9V 243 0
23 BD+03 2782 * 13 29 55.9119182184 +02 45 26.785202868   10.66 9.73     KIIvw 44 0
24 HD 122563 Pe* 14 02 31.8455084952 +09 41 09.944391876 7.47 7.10 6.19 5.37 4.79 G8:III:Fe-5 854 0
25 HD 122956 Pe* 14 05 13.0244442888 -14 51 25.455804480   8.18 7.3 6.88   G6IV/VwF6 156 0
26 HD 126238 Pe* 14 25 29.9571431040 -43 38 36.948515460   8.44 7.7 7.44   G3/8wF0/2 111 0
27 HD 128279 Pe* 14 36 48.5108525999 -29 06 46.612858494 8.64 8.63 8.00     Gw 194 0
28 HD 130551 PM* 14 51 31.7225624616 -60 55 50.851034904   9.068 8.751     F5V 100 0
29 HD 132475 PM* 14 59 49.7651173448 -22 00 45.815162806 8.98 9.11 8.55     F5/6V 240 1
30 HD 134169 SB* 15 08 18.0570477216 +03 55 50.144061360 8.14 8.22 7.70     F7V 212 0
31 NGC 6205 337 RG* 16 41 36.8265865632 +36 29 28.802595660   14.89 13.80     ~ 26 0
32 M 13 GlC 16 41 41.634 +36 27 40.75     5.8     ~ 2193 0
33 M 92 GlC 17 17 07.39 +43 08 09.4     6.52     ~ 2116 0
34 BD+23 3130 Pe* 17 32 41.6247211304 +23 44 11.625460773     8.9 8.6   G0III 133 0
35 HD 160693 PM* 17 39 36.8721883235 +37 11 01.504256846 8.94 8.92   8.0   G0 210 0
36 HD 175305 RG* 18 47 06.4416868934 +74 43 31.451436187 8.07 7.93 7.18 6.52 6.03 G5III 220 0
37 HD 184499 PM* 19 33 27.0808591023 +33 12 06.719255906 7.22 7.22 6.64 6.14 5.79 G0V 244 0
38 HD 184266 HB* 19 34 15.3865887336 -16 19 00.228534420 8.27 8.12 7.57     F2V 122 0
39 HD 200654 Pe* 21 06 34.7513254468 -49 57 50.280288000   9.74 9.1     CEMP 107 0
40 * gam Pav PM* 21 26 26.6049826473 -65 21 58.313057521 4.57 4.70 4.22 3.75 3.45 F9VFe-1.4CH-0.7 411 0
41 * nu. Ind ** 22 24 36.8853892493 -72 15 19.488237466   5.94 5.29     G9VFe-3.1CH-1.5 276 0

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