1998A&A...330L..29N


Query : 1998A&A...330L..29N

1998A&A...330L..29N - Astronomy and Astrophysics, volume 330, L29-32 (1998/2-2)

HIPPARCOS results for ROSAT-discovered young stars.

NEUHAEUSER R. and BRANDNER W.

Abstract (from CDS):

Out of ∼500 Lithium-rich ROSAT counterparts, which were presumed to be low-mass pre-main sequence stars, 21 stars have been observed by HIPPARCOS. We study their parallaxes, proper motions, and photometric data. For 7 out of 10 Taurus and Lupus stars in our sample, proper motions and parallaxes are not inconsistent with membership to these associations, while most of the stars in Chamaeleon and Scorpius appear to be young foreground stars. Combined with ground based photometry and spectroscopy, HIPPARCOS parallaxes allow us to place 15 stars on an H-R diagram. All these 15 stars lie above the Zero-Age-Main-Sequence and thus are indeed pre-main sequence stars with ages from 1 to 15Myr. Only two of the stars are located on the Hayashi-tracks, whereas the other 13 are post-T Tauri stars located on radiative tracks. Although the sample is admittedly small, containing only 3% of the total sample of Lithium-rich ROSAT counterparts, it does not confirm recent predictions by other authors: We find no stars in the age range from 20 to 100Myr. The foreground pre-main sequence stars may have been ejected towards us, or they belong to the Gould Belt system, a plane filled with young stars.

Abstract Copyright:

Journal keyword(s): astrometry - stars: late-type - stars: pre-main sequence - stars: kinematics - H-R diagram

Simbad objects: 27

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Number of rows : 27
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 22 OpC 03 46 24.2 +24 06 50           ~ 3435 0
2 BD+11 533 * 03 52 24.7605074304 +12 22 43.672462392   10.41 9.83     F8 23 0
3 HD 284149 TT* 04 06 38.7981157344 +20 18 11.151888084   10.21 9.63     F8 53 0
4 AG+18 339 Y*O 04 27 05.9787842904 +18 12 37.200405492   9.09 8.73     G5 36 0
5 NAME Taurus Complex SFR 04 41.0 +25 52           ~ 4416 0
6 HD 283798 TT* 04 41 55.1542944840 +26 58 49.419533856   10.21 9.55     G2 52 0
7 LDN 1537 DNe 04 51.1 +26 25           ~ 8 0
8 HD 81485A TT* 09 19 24.6525107640 -77 38 36.351469968   9.02 8.33     G7V 30 0
9 HD 81485 ** 09 19 24.66139 -77 38 36.3382           G7V+K0IVe 45 0
10 HD 84075 TT* 09 36 17.8234661352 -78 20 41.588588076   9.18 8.59     G2V 57 0
11 HD 92727 ** 10 39 31.72928 -75 37 56.2785           F7/8(V) 26 0
12 IC 2602 OpC 10 42 27.1 -64 25 34           ~ 675 0
13 HD 99827 TT* 11 25 17.7399826296 -84 57 16.359618801   8.08 7.64     F5V 51 0
14 V* DW Cha Ro* 11 58 28.1662230312 -77 54 29.563860420   11.63 10.502   9.011 K4Ve 47 1
15 RX J1159.7-7601 TT* 11 59 42.2711847672 -76 01 26.178271284   12.46 11.11   9.858 K4Ve 63 0
16 CD-74 681 TT* 12 24 47.3523446520 -75 03 09.043286292 12.297 11.543 10.560 9.877 9.275 K3Ve 36 0
17 HD 109138 TT* 12 33 29.7897267528 -75 23 11.250927348   10.24 9.47     K0V 47 0
18 HD 133259 TT* 15 04 48.9148419912 -39 49 23.727080244   10.42 9.76     K(1)V+G 37 0
19 HD 134974 TT* 15 14 07.5481895352 -41 03 36.301771080 11.03 10.93 10.415 10.02 9.655 G7V 29 0
20 HD 137727 TT* 15 28 44.03424 -31 17 38.0284       9.42 8.014 G6/8 36 0
21 HD 138009 ** 15 30 26.23621 -32 18 12.9163   10.01 9.47 9.27   G6V 37 0
22 V* KW Lup PM* 15 45 47.6002137432 -30 20 55.746457152   10.34 9.37   7.956 K2V 70 0
23 HD 141277 TT* 15 49 44.9775230 -39 25 09.113328   11.40 10.640   9.523 K1IV(e) 31 0
24 CD-36 10569 TT* 15 59 49.5108561504 -36 28 27.904409112 13.01 12.06 11.12 10.32 9.66 K3e 36 0
25 HD 143677 TT* 16 03 45.3645926 -43 55 49.198300 11.09 10.57 9.681 9.14 8.664 K0IV 44 1
26 HD 143978 PM* 16 04 57.0731670000 -38 57 15.710985792 9.75 9.70 9.199 8.97 8.534 G0V 27 0
27 Lupus 3 SFR 16 09.6 -39 03           ~ 323 0

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