2002A&A...381...32A


Query : 2002A&A...381...32A

2002A&A...381...32A - Astronomy and Astrophysics, volume 381, 32-50 (2002/1-1)

Using Cepheids to determine the galactic abundance gradient. I. The solar neighbourhood.

ANDRIEVSKY S.M., KOVTYUKH V.V., LUCK R.E., LEPINE J.R.D., BERSIER D., MACIEL W.J., BARBUY B., KLOCHKOVA V.G., PANCHUK V.E. and KARPISCHEK R.U.

Abstract (from CDS):

A number of studies of abundance gradients in the galactic disk have been performed in recent years. The results obtained are rather disparate: from no detectable gradient to a rather significant slope of about -0.1dex/kpc. The present study concerns the abundance gradient based on the spectroscopic analysis of a sample of classical Cepheids. These stars enable one to obtain reliable abundances of a variety of chemical elements. Additionally, they have well determined distances which allow an accurate determination of abundance distributions in the galactic disc. Using 236 high resolution spectra of 77 galactic Cepheids, the radial elemental distribution in the galactic disc between galactocentric distances in the range 6-11kpc has been investigated. Gradients for 25 chemical elements (from carbon to gadolinium) are derived. The following results were obtained in this study. Almost all investigated elements show rather flat abundance distributions in the middle part of galactic disc. Typical values for iron-group elements lie within an interval from ≃-0.02 to ≃-0.04dex/kpc (in particular, for iron we obtained d[Fe/H]/dRG=-0.029dex/kpc). Similar gradients were also obtained for O, Mg, Al, Si, and Ca. For sulphur we have found a steeper gradient (-0.05dex/kpc). For elements from Zr to Gd we obtained (within the error bars) a near to zero gradient value. This result is reported for the first time. Those elements whose abundance is not expected to be altered during the early stellar evolution (e.g. the iron-group elements) show at the solar galactocentric distance [El/H] values which are essentially solar. Therefore, there is no apparent reason to consider our Sun as a metal-rich star. The gradient values obtained in the present study indicate that the radial abundance distribution within 6-11kpc is quite homogeneous, and this result favors a galactic model including a bar structure which may induce radial flows in the disc, and thus may be responsible for abundance homogenization.

Abstract Copyright:

Journal keyword(s): stars: abundances - stars: supergiants - galaxy: abundances - galaxy: evolution

VizieR on-line data: <Available at CDS (J/A+A/381/32): table1.dat table2.dat tablea1.dat>

Simbad objects: 77

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Number of rows : 77
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 V* BD Cas cC* 00 09 51.3937382112 +61 30 50.547772980   12.38 11.22     ~ 64 0
2 V* TU Cas cC* 00 26 19.4488112352 +51 16 49.292204088   8.507 7.835     F4 203 0
3 V* DL Cas cC* 00 29 58.5888773064 +60 12 43.065292140 10.66 9.88 8.63   7.582 G1Ib-IIHdel-1 331 0
4 V* V636 Cas cC* 01 32 43.2250253784 +63 35 37.699010016   8.486 7.176     G0Ib 109 0
5 V* VX Per cC* 02 07 48.4808945496 +58 26 36.741616512   10.47 9.37   7.927 G2IV 185 0
6 V* V440 Per cC* 02 23 51.7443704208 +55 21 53.502677352 7.76 7.120 6.291     F8Ib-II 184 0
7 V* DF Cas cC* 02 44 43.3153294344 +61 27 52.922679192   11.80 10.74     F8 84 0
8 V* SU Cas cC* 02 51 58.7511911208 +68 53 18.606894036 6.92 6.44 5.80     F5.5III+ 424 1
9 V* RW Cam cC* 03 54 21.7663072128 +58 39 11.998608120   10.02 8.72   7.054 F8 174 0
10 V* RX Cam cC* 04 04 58.4626302312 +58 39 35.218829196   8.85 7.70   6.233 G2Ib+A0V 202 0
11 V* TV Cam cC* 04 07 32.7989738664 +60 19 06.462780744   12.83 11.43     F6Ibp 52 0
12 V* SZ Tau cC* 04 37 14.7776556504 +18 32 34.926940860 7.65 7.13 6.37     F6.7:Ib 305 0
13 V* AW Per cC* 04 47 46.3149227688 +36 43 22.033952832   8.46 7.51   6.200 F0+B6: 221 0
14 V* RX Aur cC* 05 01 23.1881833128 +39 57 37.423107252   8.49 7.62   6.594 G0III 210 0
15 V* YZ Aur cC* 05 15 21.9827588256 +40 04 40.880491572   11.77 10.24     G5 108 0
16 * bet Dor cC* 05 33 37.5159729864 -62 29 23.376457680 5.13 4.58 3.76 3.55 3.12 F8/G0Ib 377 0
17 V* ST Tau cC* 05 45 03.1603367712 +13 34 34.903715808   9.13 7.79   7.149 G0 132 0
18 V* EU Tau cC* 05 45 40.5288555072 +18 39 24.819950988   8.71 8.08     G5 118 0
19 V* GQ Ori cC* 06 11 13.5830023776 +09 36 44.985287232   9.81 8.88   7.869 B 84 1
20 V* SV Mon cC* 06 21 26.3049089544 +06 28 12.578441700   9.32 8.28     G1Ib 174 0
21 V* RS Ori cC* 06 22 13.1926522608 +14 40 41.255838516   9.34 8.42   7.270 F4Ib 150 0
22 V* T Mon cC* 06 25 12.9996760920 +07 05 08.558582892 8.24 7.20 5.98   4.996 G3Iabv+A0p 464 1
23 * 48 Aur cC* 06 28 34.0881845487 +30 29 34.929596860 6.73 6.23 5.55   4.777 F5.5-G0Ib 382 0
24 V* W Gem cC* 06 34 57.4524971712 +15 19 49.696329540 7.79 7.25 6.54   5.908 F5-G1 213 0
25 V* CV Mon cC* 06 37 04.8449178072 +03 03 50.274557532   11.32 9.90   8.631 ~ 240 0
26 V* AC Mon cC* 07 00 59.8200543168 -08 42 32.370161148   11.37 10.29     F5 86 0
27 V* V526 Mon cC* 07 01 53.6184975816 -01 07 51.455769024   9.20 8.67     F3III 81 0
28 * zet Gem cC* 07 04 06.5312384690 +20 34 13.074474962 5.20 4.58 3.79   3.082 G1Ib 569 0
29 V* VX Pup cC* 07 32 36.6489773592 -21 55 49.534161528   9.87 9.32 8.97   F3IV 138 0
30 V* X Pup cC* 07 32 47.0329137816 -20 54 34.884361152   9.56 8.46   7.143 K0 181 0
31 * y03 Pup cC* 07 38 18.2084341776 -48 36 05.164557768   6.314 5.658 6.94   F7Ib/II 118 0
32 V* SW Vel cC* 08 43 38.6903528472 -47 24 11.200999464   9.58 8.32     F8/G0Ib 184 0
33 * 35 Cru cC* 12 31 40.3303562544 -59 25 26.124690324 6.60 6.19 5.53     F7Ib/II 140 0
34 V* V Cen cC* 14 32 33.0833481288 -56 53 15.774129600 8.44 7.84 6.93   5.798 F5Ib/II 274 0
35 V* V340 Nor cC* 16 13 17.3997630552 -54 14 05.586545400   9.61 8.47 8.83   G2Iab 160 1
36 V* S Nor cC* 16 18 51.8316855000 -57 53 59.256000852 8.15 7.49 6.49   5.427 F8/G0Ib 374 1
37 V* V500 Sco cC* 17 48 37.5008772936 -30 28 33.459985200   10.07 8.81   7.191 K0 127 0
38 V* Y Oph cC* 17 52 38.7019050072 -06 08 36.874071816 8.62 7.61 6.21     G3Ia 364 0
39 * gam01 Sgr cC* 18 05 01.2264355704 -29 34 48.322222356 5.99 5.47 4.69   3.869 G0Ib/II 348 0
40 V* WZ Sgr cC* 18 16 59.7160721616 -19 04 32.989734840   9.10 7.45     F7(III) 252 0
41 V* Y Sgr cC* 18 21 22.9862401944 -18 51 36.006450458 7.31 6.69 5.75   4.810 F8II 289 0
42 V* U Sgr cC* 18 31 53.3323107600 -19 07 30.261459540 8.50 7.81 6.68   5.413 G1Ib 467 0
43 V* V367 Sct cC* 18 33 35.2353033192 -10 25 38.126250552   13.34 11.580     F7Ib 175 0
44 V* BQ Ser cC* 18 36 15.9375844368 +04 23 53.693400840   10.49 9.21     F5III 108 0
45 V* EW Sct cC* 18 37 51.1112159832 -06 47 48.494842332   9.50 7.96     F8Ib/II 110 0
46 V* BB Her cC* 18 45 54.1032230136 +12 20 10.110329988   11.1 10.02     G5 94 0
47 V* YZ Sgr cC* 18 49 28.5890872992 -16 43 22.896000948 8.49 7.91 7.02   6.207 G2Ib 169 0
48 V* FF Aql cC* 18 58 14.7483041520 +17 21 39.297557628 6.61 6.18 5.38     F6Ib 364 0
49 V* SZ Aql cC* 19 04 39.4158230832 +01 18 22.158826524   9.92 7.92   7.039 F8/G0Ib 193 0
50 V* TT Aql cC* 19 08 13.7497129848 +01 17 55.147982640 8.96 7.86 6.50   5.699 G0/2Ib 281 0
51 V* V496 Aql cC* 19 08 20.7707435688 -07 26 15.879957540   8.88 7.79     F8/G0Iab/b 183 0
52 V* FM Aql cC* 19 09 15.9900952128 +10 33 08.961371208 9.76 9.05 7.89   6.725 F2I 188 0
53 V* FN Aql cC* 19 12 47.3148920688 +03 33 26.703677448   9.58 7.96     F8/G0Iab/b 185 0
54 V* V473 Lyr cC* 19 15 59.4893949000 +27 55 34.686262056 7.18 6.770 6.153     F8Ib-II 216 0
55 V* U Vul cC* 19 36 37.7293294920 +20 19 58.576725768   8.368 7.162   5.556 F8Iab 230 0
56 V* V924 Cyg cC* 19 38 11.5846242744 +32 29 22.448573196   11.48 10.75     F8I 83 0
57 V* SU Cyg cC* 19 44 48.7341456312 +29 15 52.895535048 7.10 6.88 6.44 6.06 5.84 F2Iab:+B8.0V 299 0
58 V* S Vul cC* 19 48 23.8063718736 +27 17 11.428754460   11.392 9.551 8.775   K0 193 0
59 V* SV Vul cC* 19 51 30.9059845128 +27 27 36.837672012 8.65 9.00 6.74   5.703 F8Ia 433 0
60 V* V1162 Aql cC* 19 52 20.9909317368 -11 22 00.754130100   8.73 7.81     G2Ib 91 0
61 * eta Aql cC* 19 52 28.3689223781 +01 00 20.371980515 5.12 4.61 3.80   3.030 F6Iab+B9.8V 672 0
62 * 10 Sge cC* 19 56 01.2628947456 +16 38 05.262056412 6.45 6.03 5.36 6.81 4.789 F7Ib 349 0
63 V* X Vul cC* 19 57 28.6054979616 +26 33 23.284943352   10.16 8.87   7.147 F8Ia 174 0
64 V* CD Cyg cC* 20 04 26.5612467720 +34 06 44.187399612   9.35 8.35     F8-G5Iab-Ib 206 0
65 V* X Cyg cC* 20 43 24.1917118680 +35 35 16.077149700 8.69 7.70 6.47   5.241 F7Ib 469 0
66 V* TX Del WV* 20 50 12.6952830192 +03 39 08.360890416   9.95 8.84     F8 103 0
67 V* T Vul cC* 20 51 28.2383768376 +28 15 01.819622952 6.89 6.49 5.77   5.061 F5Ib+A0.8V 342 0
68 V* DT Cyg cC* 21 06 30.2442031296 +31 11 04.762896468 6.70 6.38 5.82     F7II- 312 0
69 V* V1334 Cyg cC* 21 19 22.1791528656 +38 14 14.868825648   6.364 5.882     F1II+B7.0V 190 0
70 V* V1726 Cyg cC* 21 29 38.9418445224 +48 58 08.707807488   9.76 8.91     F5 72 1
71 V* IR Cep cC* 21 57 51.9253905744 +61 01 07.906978452   8.68 7.86     G0 98 0
72 V* BG Lac cC* 22 00 25.1466021504 +43 26 43.331629776   9.33 8.59   7.793 G0.7 152 0
73 V* Y Lac cC* 22 09 02.9002579560 +51 02 45.084186096   9.79 9.13   8.292 F8 175 0
74 * del Cep cC* 22 29 10.2626640314 +58 24 54.697613650 4.71 4.35 3.75   3.219 F5Iab:+B7-8 730 0
75 V* V351 Cep cC* 22 33 41.3490623952 +57 19 05.900077740   10.39 9.50     F8Ib 53 0
76 V* Z Lac cC* 22 40 52.1457028632 +56 49 46.083774432   9.71 8.57   7.164 F6Ib 228 0
77 V* CF Cas cC* 23 58 17.9760671064 +61 13 15.821693832   12.72 10.80   9.700 F8Ibv 245 0

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