2004A&A...415..155B


Query : 2004A&A...415..155B

2004A&A...415..155B - Astronomy and Astrophysics, volume 415, 155-170 (2004/2-3)

Oxygen trends in the Galactic thin and thick disks.

BENSBY T., FELTZING S. and LUNDSTROEM I.

Abstract (from CDS):

We present oxygen abundances for 72 F and G dwarf stars in the solar neighbourhood. Using the kinematics of the stars we divide them into two sub-samples with space velocities that are typical for the thick and thin disks, respectively. The metallicities of the stars range from [Fe/H]≃-0.9 to +0.4 and we use the derived oxygen abundances of the stars to: (1) perform a differential study of the oxygen trends in the thin and the thick disk; (2) to follow the trend of oxygen in the thin disk to the highest metallicities. We analyze the forbidden oxygen lines at 6300Å and 6363Å as well as the (NLTE afflicted) triplet lines around 7774Å. For the forbidden line at 6300Å we have spectra of very high S/N (>400) and resolution (R>215000). This has enabled a very accurate modeling of the oxygen line and the blending Ni lines. The high internal accuracy in our determination of the oxygen abundances from this line is reflected in the very tight trends we find for oxygen relative to iron. From these abundances we are able to draw the following major conclusions: (i) That the [O/Fe] trend at super-solar [Fe/H] continues downward which is in concordance with models of Galactic chemical evolution. This is not seen in previous studies as it has not been possible to take the blending Ni lines in the forbidden oxygen line at 6300Å properly into account; (ii) That the oxygen trends in the thin and the thick disks are distinctly different. This confirms and extends previous studies of the other α-elements; (iii) That oxygen does not follow Mg at super-solar metallicities; (iv) We also provide an empirical NLTE correction for the infrared OI triplet that could be used for dwarf star spectra with a S/N such that only the triplet lines can be analyzed well, e.g. stars at large distances; (v) Finally, we find that Gratton et al. (1999A&A...350..955G) overestimate the NLTE corrections for the permitted oxygen triplet lines at ∼7774Å for the parameter space that our stars span.

Abstract Copyright:

Journal keyword(s): stars: fundamental parameters - stars: abundances - galaxy: disk - galaxy: formation - galaxy: abundances - galaxy: kinematics and dynamics

VizieR on-line data: <Available at CDS (J/A+A/415/155): table4.dat>

Simbad objects: 72

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Number of rows : 72
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2023
#notes
1 HD 3628 PM* 00 39 13.2642083565 +03 08 02.129163830   7.969 7.339 6.9   G3V 122 0
2 G 267-153 PM* 00 39 57.8234302713 -33 57 41.218831187   7.18 6.69     F7V 75 0
3 HD 3823 PM* 00 40 25.6698671445 -59 27 16.566549816   6.44 5.90     G0VFe-0.9CH-0.4 168 0
4 HD 3795 PM* 00 40 32.7939851012 -23 48 17.728718238   6.84 6.14     K0VFe-1.5CH-1.3 202 0
5 HD 4308 PM* 00 44 39.2672095011 -65 38 58.277728125 7.31 7.193 6.552     G6VFe-0.9 242 1
6 HD 4597 PM* 00 47 30.7543402959 -36 56 24.700840935   8.39 7.85     F7/8V 85 1
7 * 29 Cet PM* 01 07 59.6638945208 +01 59 34.981418276   7.31   5.9   G8IV/V 152 0
8 * nu. Phe PM* 01 15 11.1214282378 -45 31 53.992580679 5.65 5.54 4.96 4.47 4.11 F9VFe+0.4 251 0
9 HD 9562 PM* 01 33 42.8357181696 -07 01 31.238801760 6.61 6.40 5.76     G1V 254 0
10 HD 12042 PM* 01 56 59.9847437632 -51 45 58.485059294   6.58 6.10     F8.5Fe-0.7 94 0
11 HD 14412 PM* 02 18 58.5047816166 -25 56 44.473793228   7.07 6.34     G8V 215 0
12 * lam02 For PM* 02 36 58.6077493776 -34 34 40.711246464 6.67 6.45 5.79     G1V 208 1
13 HD 17006 PM* 02 42 08.4437861136 -46 31 27.989231952   6.985 6.094     K1III 55 0
14 * iot Hor PM* 02 42 33.4666679022 -50 48 01.055138166   5.97 5.40     F8V 379 1
15 * eps For PM* 03 01 37.6288785045 -28 05 29.373792325   6.68 5.85     G9:V 179 0
16 * 94 Cet PM* 03 12 46.4365677072 -01 11 45.955808988   5.631 5.070     F8.5V 440 1
17 HD 20407 PM* 03 15 06.3902054760 -45 39 53.360466948 7.326 7.334 6.756 6.426 6.103 G5VFe-1.2CH-1 116 0
18 * e Eri PM* 03 19 55.6509122226 -43 04 11.215188426 5.20 4.98 4.27 3.65 3.25 G6V 431 1
19 HD 22879 Pe* 03 40 22.0652879951 -03 13 01.124265616 7.146 7.222 6.667 6.346 6.016 G0VmF2 481 0
20 * del Eri * 03 43 14.9005379551 -09 45 48.210955899 5.13 4.46 3.54 2.82 2.32 K0+IV 579 0
21 * 58 Eri BY* 04 47 36.2917029384 -16 56 04.040472552   6.14 5.50     G2.5IV-V 412 0
22 * 59 Eri * 04 48 32.5336286112 -16 19 46.151304420   6.278 5.755     F8V 79 0
23 HD 32820 PM* 05 03 53.9523575328 -41 44 41.825936796   6.824 6.303     F8V 70 0
24 * 68 Eri PM* 05 08 43.6987121400 -04 27 22.349830176   5.546 5.119     F5.5VkF4mF2 223 0
25 * zet Pic PM* 05 19 22.1350114344 -50 36 21.481796808   5.96 5.45     F6IV 86 0
26 * alf Men PM* 06 10 14.4725823672 -74 45 10.958331816   5.798 5.069     G7V 268 0
27 HD 45701 PM* 06 24 26.6002796856 -63 25 44.439432744   7.12 6.46     G1V 110 0
28 HD 45184 PM* 06 24 43.8795895848 -28 46 48.415725948   7.01 6.39 6.24 8.94 G2Va 192 1
29 HD 130551 PM* 14 51 31.7225624616 -60 55 50.851034904   9.068 8.751     F5V 99 0
30 * nu.02 Lup PM* 15 21 48.1499105161 -48 19 03.469906910 6.35 6.30 5.65     G3/5V 273 1
31 HD 144585 PM* 16 07 03.3696573456 -14 04 16.671141984 7.22 6.98 6.32     G2V 183 0
32 HD 145148 PM* 16 09 11.2150771435 +06 22 43.289900623   6.97   5.3   K1.5IV 171 0
33 HD 147513 PM* 16 24 01.2911377368 -39 11 34.729913940 6.17 6.02 5.376     G5V 339 1
34 * zet TrA SB* 16 28 28.1422653048 -70 05 03.824909916   5.446 4.899     F9V 198 0
35 HD 149612 PM* 16 39 04.1417975517 -58 15 29.528870106 7.674 7.644 7.034 6.679 6.334 G5VFe-1.2CH-0.9 78 0
36 HD 152391 PM* 16 52 58.8025159848 -00 01 35.118396116   7.40 6.64     G8.5Vk: 360 0
37 HD 153075 PM* 17 00 31.6444229092 -57 17 49.574473934   9.415 8.910     G2VFe-0.8CH-0.5 98 0
38 V* V2213 Oph BY* 17 05 16.8186610814 +00 42 09.221511649   6.59   5.6   F8.5IV-V 333 0
39 HD 156098 PM* 17 17 03.6458542704 -32 39 46.220745528   6.021 5.526     F6V 114 0
40 HD 156365 PM* 17 18 07.1354998272 -24 04 22.881440568   7.27 6.59     G3V 85 0
41 HD 157089 PM* 17 21 07.0564477831 +01 26 34.983929347 7.60 7.59 7.01 6.46 6.14 F8VgF8mF6 243 0
42 HD 157466 PM* 17 22 27.6459785904 +24 52 45.935235804       6.6   F8V 123 0
43 HD 157347 PM* 17 22 51.2877087336 -02 23 17.439450684   6.965 6.278     G3V 191 0
44 * 84 Her PM* 17 43 21.5645208624 +24 19 40.156969404   6.394 5.729     G2IIIb 144 0
45 * mu. Ara PM* 17 44 08.7031414872 -51 50 02.591603160   5.85 5.15     G3IV-V 512 2
46 HD 162396 PM* 17 52 52.5830170920 -41 59 47.486766588   6.74 6.20     F9VFe-0.7CH-0.4 128 0
47 HD 165401 PM* 18 05 37.4541846601 +04 39 25.797083469 7.443 7.399 6.786 6.432 6.09 G2V 218 0
48 HD 169830 * 18 27 49.4849984976 -29 49 00.700831380   6.406 5.902 7.01   F7V 272 1
49 HD 172051 ** 18 38 53.4010594968 -21 03 06.750986472   6.518 5.860     G6V 194 1
50 HD 179949 BY* 19 15 33.2300695008 -24 10 45.671448072   6.772 6.237     F8V 391 1
51 * b Aql PM* 19 24 58.1999714302 +11 56 39.888480530 6.35 5.93   4.7   G7IVHdel1 478 0
52 HD 183877 PM* 19 32 40.3321897451 -28 01 11.310045098   7.83 7.15     G8VFe-1CH-0.5 99 0
53 HD 184985 PM* 19 37 34.4135659464 -14 18 06.478148448   5.938 5.451     F7V 100 0
54 HD 190360 PM* 20 03 37.4050868074 +29 53 48.492435887   6.44   5.2   G7IV-V 429 1
55 HD 190009 * 20 03 44.3100162600 -22 35 44.150285868   6.928 6.428     F7V 70 0
56 * del Pav PM* 20 08 43.6088716052 -66 10 55.442769229 4.78 4.32 3.56 2.95 2.61 G8IV 380 0
57 HD 193307 PM* 20 21 41.0365243245 -49 59 57.900101995   6.82 6.28     F9V 125 0
58 HD 197214 SB* 20 43 15.9995447169 -29 25 26.058051892 7.778 7.635 6.960 6.583 6.229 G6V 85 0
59 HD 199288 PM* 20 57 40.0687221764 -44 07 45.733001992   7.11 6.52     G2VFe-1.0 190 0
60 * 11 Aqr PM* 21 00 33.8408325744 -04 43 48.934668864   6.819 6.192     G1V 208 0
61 * gam Pav PM* 21 26 26.6049826473 -65 21 58.313057521 4.57 4.70 4.22 3.75 3.45 F9VFe-1.4CH-0.7 405 0
62 HD 208998 PM* 22 01 36.5232180120 -53 05 36.882266969   7.68 7.14     G0V 103 0
63 HD 210277 PM* 22 09 29.8657847411 -07 32 55.162082226   8.85 8.57 7.36   G8V 328 1
64 HD 210483 PM* 22 10 26.1624191757 +18 47 49.580722188   8.16   7.2   G4 72 0
65 HD 210918 PM* 22 14 38.6528791223 -41 22 53.994495360 7.02 6.88 6.23     G2V 197 0
66 HD 211976 * 22 20 55.7972067264 +08 11 12.271519068   6.621 6.163     F5V 98 0
67 HD 212231 PM* 22 23 14.4741477417 -25 50 32.224203160   8.47 7.86     G2V 79 0
68 * rho Ind PM* 22 54 39.4819393536 -70 04 25.352060772 6.95 6.71 6.05     G1VFe+0.3 186 1
69 * 51 Peg PM* 22 57 27.9804852576 +20 46 07.797040104 6.39 6.16 5.46 4.97 4.61 G2IV 1139 1
70 HD 217107 ** 22 58 15.5408995872 -02 23 43.383234768   6.919 6.163     G8IV/V 357 1
71 HD 224022 PM* 23 54 38.6211470319 -40 18 00.221877716   6.60 6.03     G0V 88 0
72 HD 224383 PM* 23 57 33.5181718097 -09 38 51.070746906   8.51 7.88     G3V 116 0

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2023.03.21-12:40:24

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