2014A&A...563A.138V


Query : 2014A&A...563A.138V

2014A&A...563A.138V - Astronomy and Astrophysics, volume 563A, 138-138 (2014/3-1)

Spectroscopic study of early-type multiple stellar systems. I. Orbits of spectroscopic binary subsystems.

VERAMENDI M.E. and GONZALEZ J.F.

Abstract (from CDS):

The present knowledge of stellar properties and dynamical structure of early-type multiple stellar systems is insufficient to offer useful statistical constraints for stellar formation models. To increase the amount of observational information about the characteristics of early-type multiples, we carried out a spectroscopic monitoring to search for new spectroscopic components and to determine their orbits. We observed 30 early-type multiple systems using the 2.15m telescope and REOSC echelle spectrograph at the Complejo Astronomico El Leoncito (CASLEO) during 10 observing runs between 2008 and 2013. We measured radial velocities by cross-correlations and applied a spectral disentangling method to double-lined systems. We calculated orbital elements for the inner subsystem of each analysed multiple. In this first paper we present calculated orbits for six previously catalogued subsystems. Three subsystems had no previously published parameters, while we obtained more accurate orbits for the other three. In one case we found absolute masses and radii for the components by using available photometric data. The long-term spectroscopic monitoring of multiple systems is a useful method of investigating the companions in intermediate hierarchical levels, particularly those that could affect the dynamical evolution of a close inner binary subsystem.

Abstract Copyright:

Journal keyword(s): techniques: radial velocities - binaries: spectroscopic - stars: early-type - binaries: eclipsing - stars: chemically peculiar

VizieR on-line data: <Available at CDS (J/A+A/563/A138): table2.dat list.dat sp/*>

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 HD 29172 * 04 35 13.2668917080 -09 44 13.157073636   7.82 7.61     A8V 26 0
2 HD 29173 * 04 35 14.1159669168 -09 44 10.929586092   6.48 6.37     A2IIIs 47 0
3 HD 35859 * 05 24 42.3248782536 -52 18 46.950235704   6.800 6.735     A2V 23 0
4 * tet Pic ** 05 24 46.2881919 -52 18 58.483560   6.30 6.23     A0V 37 0
5 * iot Ori SB* 05 35 25.9819073 -05 54 35.643537 1.45 2.53 2.77     O9IIIvar 773 0
6 * iot Ori B Or* 05 35 26.4561867264 -05 54 44.447086188   7.1 7.00     B8III 39 0
7 HD 44333 EB* 06 21 25.7704520 +02 16 06.678015   6.539 6.280     A4/5IV 85 0
8 SAO 197422 Y*O 06 58 15.9743665248 -35 25 08.885555940   9.79 9.70     ~ 13 0
9 HD 52093 EB* 06 58 17.17898 -35 25 08.8798   9.39 9.13 8.65   A(pSi) 15 0
10 UCAC2 26421124 * 07 45 23.9692902912 -14 42 32.165696628   11.63 10.57 10.29   ~ 3 0
11 * 2 Pup ** 07 45 28.9 -14 41 18           ~ 2 0
12 * eps Vol SB* 08 07 55.7944779456 -68 37 01.432689816   4.270 4.398     B5III 69 0
13 HD 71487 SB* 08 26 17.7300667968 -39 03 32.258348136   6.43 6.49 7.44   B8V 71 0
14 HD 71488 ** 08 26 18.305657 -39 03 36.74748   7.11 7.04     A2Va 19 1
15 HD 72436 ** 08 31 24.6938431 -39 03 50.797000 5.62         B5V 42 0
16 CD-38 4567 * 08 31 27.2412991560 -39 03 55.390438224   9.42 9.11     ~ 3 0
17 HD 72462 ** 08 32 33.3668480496 -15 01 48.573005412   6.640 6.380     A7IV/V 36 0
18 * H Vel SB* 08 56 19.2630167160 -52 43 24.506826528   4.591 4.723     B5/6IV 73 0
19 HD 80951 ** 09 17 25.2098716626 -74 53 39.406047211   5.34 5.32 6.68   A1V 41 0
20 CD-55 3305 * 10 20 53.9687107776 -56 03 11.230666164   10.03 9.12     ~ 5 0
21 * J Vel Be* 10 20 54.7957129824 -56 02 35.655748188 3.80 4.38 4.51 6.02   B5II 107 0
22 HD 93344 * 10 44 20.0265684216 -70 51 35.011297944   6.441 6.233     A5IV/V 30 0
23 HD 93359 * 10 44 32.3361492936 -70 51 18.935189856   6.676 6.442     A6IV 30 0
24 * eta Mus SB* 13 15 14.9353076188 -67 53 40.529009001   4.687 4.780     B7III+B7III 109 1
25 HD 116072 EB* 13 22 35.8501250304 -60 58 19.594661016   6.162 6.153     B3/5 52 1
26 * J Cen ** 13 22 37.9331015842 -60 59 18.170162109 3.81 4.369 4.509     B3V 106 0
27 * 3 Cen ** 13 51 49.60136 -32 59 38.7067           B5III+B9IV 248 0
28 HD 126366 ** 14 25 27.63968 -19 57 57.0213       7.82   A2V 26 0
29 HD 126367 * 14 25 29.8911563832 -19 58 11.936889588   6.709 6.595     A1/2V 44 0
30 * lam Lup SB* 15 08 50.6128505350 -45 16 47.500979673 3.18 3.88 4.05     B3V 140 0
31 * mu. Lup Be* 15 18 32.02296 -47 52 30.9957 3.82         B8Ve 105 0
32 * mu.01 Lup * 15 18 32.028034 -47 52 31.05151   4.837 4.945     B7V 3 0
33 HD 135748 * 15 18 33.7769389704 -47 52 45.218033688   6.87 6.76     A2/3(V) 25 0
34 * bet Sco ** 16 05 26.23 -19 48 19.4 2.00 2.43 2.50     B1V+B2V 29 0
35 * bet01 Sco bC* 16 05 26.2319826 -19 48 19.630018 1.68 2.55 2.62 2.60 2.69 B1V 561 0
36 * bet02 Sco SB* 16 05 26.5686169680 -19 48 06.845424840 4.19 4.87 4.89 5.58   B2V 217 0
37 * 36 Her * 16 40 35.1504490608 +04 12 25.930091088   7.06 6.93     B9V 69 0
38 HD 154895A * 17 08 13.648033 -01 04 46.11243   6.36 6.32     A1V 4 0
39 HD 154895 ** 17 08 13.6503987456 -01 04 46.124591556       7.45   A1V 74 0
40 HD 157661 ** 17 26 51.97802 -45 50 34.9096       6.53   B8V+B9V 40 0
41 HD 158320 SB* 17 30 05.6394413712 -33 42 58.877397684 6.05 6.79 6.73 7.68   B1/2Ib/II 45 0
42 V* V539 Ara EB* 17 50 28.3930000656 -53 36 44.664776352   5.60 5.71     B2/3Vnn 181 0
43 HD 163708 SB* 17 59 13.4703104784 -36 56 19.839700356   7.155 7.089 8.09   A3III 119 0
44 HD 182219 ** 19 23 17.811927 +09 30 33.05250   8.91 8.63     ~ 6 0
45 BD+09 4085 ** 19 23 17.81797 +09 30 41.7256           A0 11 0
46 HD 191056 ** 20 11 50.67965 -63 37 01.0787   8.23 8.19 9.16   A0V+(A) 16 0
47 HD 191056C * 20 11 51.3103668528 -63 36 55.159900524   9.378 9.307 9.79   ~ 8 0
48 BD+08 4670 * 21 25 04.1043143160 +09 22 49.974396204   9.62 9.26     F0 16 0
49 HD 203944 ** 21 25 05.6775490896 +09 23 02.651915292   7.59 7.42     A2 35 0

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