2006A&A...446..971J


Query : 2006A&A...446..971J

2006A&A...446..971J - Astronomy and Astrophysics, volume 446, 971-983 (2006/2-2)

Fundamental properties of pre-main sequence stars in young, southern star forming regions: metallicities. The weak-lined T-Tauri stars.

JAMES D.J., MELO C., SANTOS N.C. and BOUVIER J.

Abstract (from CDS):

Aims. The primary motivation for this project is to search for metal-rich star forming regions, in which, stars of super-solar metallicity will be created, as hopefully, will be extra-solar planets orbiting them! The two aims of this project are: 1) to show that our sample stars are young, lithium rich, magnetically active and non-accreting kinematic members of their respective regions. 2) To measure the metallicity for such members.
Methods. The feros echelle spectrograph together with eso's 2.2m telescope, was used to obtain high resolution (R=32000) spectra for each of our weak-lined T-Tauri target stars. The wavelength range of the spectra is ≃4000-8000Å.
Results. We find (pre-main sequence) model-dependent isochronal ages of the Lupus, Chamaeleon and CrA targets to be 9.1±2.1Myr, 4.5±1.6Myr and 9.0±3.9Myr respectively. The majority of the stars have LiI 6707.8Å equivalent widths similar to, or above those of, their similar mass Pleiades counterparts, confirming their youthfulness. Most stars are kinematic members, either single or binary, of their regions. We find a mean radial velocity for objects in the Lupus cloud to be <RV≥+2.6±1.8km/s, for the Chamaeleon I & II clouds, <RV≥+12.8±3.6km/s whereas for the CrA cloud, we find <RV≥-1.1±0.5km/s. All stars are coronally and chromospherically active, exhibiting X-ray and Hα emission levels marginally less, approximately equal or superior to that of their older IC 2602/2391 and/or Pleiades counterparts. All bar three of the targets show little or no signature of accretion from a circumstellar environment, according to their positions in a J-K/H-K' diagram. For the higher quality spectra, we have performed an iron-line metallicity analysis for five (5) stars in Chamaeleon, four (4) stars in Lupus and three (3) stars in the CrA star forming regions. These results show that all three regions are slightly metal-poor, with marginally sub-solar metallicities, with <[Fe/H]≥-0.11±0.14, -0.10±0.04 and -0.04±0.05 respectively.
Conclusions. A sample of stars in several nearby, young star-forming regions has been established, the majority of which is young, lithium rich, magnetically active and are non-accreting kinematic members of their respective clouds. Within the errors, each region is essentially of solar metallicity.

Abstract Copyright:

Journal keyword(s): stars: fundamental parameters - stars: pre-main sequence - stars: abundances - ISM: individual objects: Lupus - ISM: individual objects: Chamaeleon I , II - ISM: individual objects: Corona Australis (CrA)

Simbad objects: 49

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Number of rows : 49
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 Cl Melotte 20 OpC 03 26 28.1 +48 58 30           ~ 861 0
2 * eps Eri BY* 03 32 55.8444911587 -09 27 29.739493865 5.19 4.61 3.73 3.00 2.54 K2V 1931 1
3 Cl Melotte 22 OpC 03 46 24.2 +24 06 50           ~ 3432 0
4 HD 36436 PM* 05 25 38.4208034328 -69 35 43.420256088   9.71 9.19     F7V 29 0
5 * bet Lep PM* 05 28 14.7228880318 -20 45 33.997988694 4.13 3.66 2.84 2.19 1.75 G5II-IIIa: 239 0
6 M 42 HII 05 35 17 -05 23.4           ~ 4072 0
7 NAME Ori A MoC 05 38 -07.1           ~ 3007 0
8 * 20 Mon PM* 07 10 13.6815026472 -04 14 13.585055244 6.73 5.95 4.92 4.13 3.61 K0III 148 0
9 HD 65216 PM* 07 53 41.3195697504 -63 38 50.353461420   8.65 7.96     G5V 142 1
10 V* CS Pyx BY* 08 36 23.0165447400 -30 02 15.446225796   8.84 8.06     G8IV-VFe+0.5 162 1
11 IC 2391 OpC 08 41 10.1 -52 59 28           ~ 822 0
12 CD-75 392 TT* 08 50 05.4486135048 -75 54 38.082436848   11.305 10.604 10.493 9.728 G9V 39 0
13 HD 86356 TT* 09 51 50.6839987728 -79 01 37.826858352   10.93 10.201   9.243 K0Ve 30 0
14 IC 2602 OpC 10 42 27.1 -64 25 34           ~ 675 0
15 NAME Cha 1 MoC 11 06 48 -77 18.0           ~ 1154 1
16 Sz 41 TT* 11 12 24.3973943352 -76 37 06.181395384   11.2 11.60   10.22 K7+M2.5 102 1
17 2MASS J11291261-7546263 TT* 11 29 12.6349452648 -75 46 26.416175772     12.91     K3Ve 24 0
18 RX J1140.3-8321 TT* 11 40 16.6137236784 -83 21 00.350133984   12.604 11.464 11.197 10.132 K4Ve 31 0
19 * bet Vir PM* 11 50 41.7185158616 +01 45 53.001539131 4.26 4.15 3.60 3.13 2.85 F9V 929 0
20 V* DW Cha Ro* 11 58 28.1662230312 -77 54 29.563860420   11.63 10.502   9.011 K4Ve 47 1
21 RX J1159.7-7601 TT* 11 59 42.2711847672 -76 01 26.178271284   12.46 11.11   9.858 K4Ve 63 0
22 HD 104467 TT* 12 01 39.1168325928 -78 59 16.915311240   9.26 8.466   7.678 G3V(e) 56 0
23 HD 109138 TT* 12 33 29.7897267528 -75 23 11.250927348   10.24 9.47     K0V 46 0
24 NAME Cha II MoC 12 54 -77.2           ~ 337 0
25 HD 113074 * 13 03 30.9382746912 -77 01 53.775816240   9.55 9.40 9.81   B9V 18 0
26 RX J1307.3-7708 X 13 07 15.4 -77 08 15           ~ 2 0
27 HD 126053 PM* 14 23 15.2847745835 +01 14 29.641269692 6.98 6.90 6.27 5.71 5.39 G1.5V 406 0
28 CD-34 10180 TT* 15 07 14.8172880480 -35 04 59.527866036 11.84 11.37 10.662 10.02 9.631 K0IVe 31 0
29 RX J1507.4-4601 Ro* 15 07 27.5855735424 -46 01 07.372665840   12.22 11.36 11.22 10.458 K1 11 0
30 V* LT Lup TT* 15 15 45.3719328096 -33 31 59.725104132 12.00 11.61 10.670 10.17 9.574 K0e 31 0
31 V* LW Lup TT* 15 18 26.9192118480 -37 38 02.070123108 12.23 11.79 10.891 10.41 9.850 K0IVe 36 0
32 V* MM Lup TT* 15 23 25.5768349080 -40 55 46.773915996 13.60 13.11 12.07 11.62 10.71 K2 16 0
33 V* MP Lup TT* 15 24 32.3572754448 -36 52 02.770376232 12.69 11.96 11.231 10.78 10.184 K0V(e) 27 0
34 CD-35 10323 Y*O 15 29 38.5729786728 -35 46 51.415549788   11.37 10.674   9.514 K1IVe 14 0
35 CD-35 10498 TT* 15 46 41.2077442728 -36 18 47.458696608 12.21 12.24 11.21 10.00 9.44 K1e 23 0
36 CD-39 10162 TT* 15 47 41.7650471808 -40 18 26.748166644 12.58 12.33 11.158 10.75 10.047 K1e 29 0
37 V* MZ Lup TT* 16 01 08.9697543744 -33 20 14.177235192 12.11 11.88 10.88 10.35 9.812 G5IVe 30 0
38 NAME Lupus Complex SFR 16 03 -38.1           ~ 720 0
39 CD-38 10866 TT* 16 05 45.0016393344 -39 06 06.533278704 11.60 11.41 10.584 10.02 9.645 K0Ve 24 0
40 RX J1627.1-2419 mul 16 27 10 -24 19.2           ~ 2 0
41 EM* SR 21A TT* 16 27 10.2778380120 -24 19 12.622467720   16.08 14.10     G1 271 1
42 V* V2213 Oph BY* 17 05 16.8186610814 +00 42 09.221511649   6.59   5.6   F8.5IV-V 339 0
43 V* V2215 Oph RS* 17 16 13.3624141798 -26 32 46.136563394   7.50 6.34   4.8 K5V 305 0
44 * kap Ara * 17 26 00.0431284872 -50 38 00.623818572   6.236 5.193     G8III 78 0
45 HD 160346 SB* 17 39 16.9163262 +03 33 18.875718   7.496 6.525 5.9   K3-V 301 0
46 CD-37 12759 TT* 18 39 05.2883583096 -37 26 21.824393172   11.96 10.98     K1 17 0
47 CD-36 13163 TT* 18 57 20.8422617712 -36 43 00.643933128   11.77 11.16     G5IV 13 0
48 NAME Corona Australis Cloud MoC 19 01 51 -36 58.9           ~ 490 0
49 V* V702 CrA Or* 19 02 01.9776932592 -37 07 43.519646568   11.28 10.512   9.512 G5e 43 0

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