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Pre-Main Sequence Binaries: The ESO Imaging Survey

Published online by Cambridge University Press:  12 April 2016

H. Zinnecker
Affiliation:
Institut für Astronomie und Astrophysik, Universität Würzburg, D-8700 Würzburg, Germany
W. Brandner
Affiliation:
Institut für Astronomie und Astrophysik, Universität Würzburg, D-8700 Würzburg, Germany
B. Reipurth
Affiliation:
European Southern Observatory, La Silla, Chile

Abstract

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We have observed a complete sample of southern Hα emission line pre-main sequence (PMS) stars associated with the nearby dark clouds Chamaeleon and Ophiuchus in an effort to detect binary companions. We have used the high resolution CCD camera SUSI (0.13″ /pixel) at the ESO 3.5m New Technology Telescope (NTT). The observations were carried out in the Gunn z filter (0.95μ). As a result, we have discovered 28 companions out of 160 objects surveyed in the range of angular separation 0″.5 – 10″. We present histograms of semi-major axes and of brightness ratios of these PMS binaries. Taking small incompleteness corrections into account, the frequency of PMS binaries with semi-major axes in the range 100-1500 AU is 20%, while it is only 15% in same range for solar-type Main Sequence (MS) stars. Extrapolation yields a total PMS binary frequency of 70%. Evolutionary and environmental implications are briefly discussed.

Type
Pre-Main Sequence & Young Binaries
Copyright
Copyright © Astronomical Society of the Pacific 1992

References

Abt, H.A. 1983, ARA&A, 21 343 Google Scholar
Batten, A.H. 1973, Binary and Multiple Systems of Stars (Pergamem Press, New York)Google Scholar
Duquennoy, A. & Mayor, M. 1991, A&A, 248 485 Google Scholar
Halbwachs, J.L. 1983, A&A, 128 399 Google Scholar
Heintz, W.D. 1969, JRASC, 63, 275 Google Scholar
Herczeg, T. 1984, Ap&SS, 99, 29 Google Scholar
Miller, G.E. & Scalo, J.M. 1978, PASP, 90, 506 CrossRefGoogle Scholar
Moneti, A. & Zinnecker, H. 1991, A&A, 242 428 Google Scholar
Reipurth, B. & Zinnecker, H. 1992, A&A submittedGoogle Scholar
Schwartz, R.D. 1977, ApJS, 35, 161 CrossRefGoogle Scholar
Schwartz, R.D. 1991, Low Mass Star Formation in Southern Molecular Clouds ESO Scientific Report No. 11, ed. Bo Reipurth, p. 93Google Scholar
Whittet, D., et al. 1987, MNRAS, 224 497 CrossRefGoogle Scholar
Wilking, B.A., Schwartz, R.D., & Blackwell, J.H. 1987, AJ, 94, 106 CrossRefGoogle Scholar
Zinnecker, H. 1989, Low Mass Star Formation and Pre-Main Sequence Evolution Proc. ESO Workshop, ed. Bo Reipurth, p. 447Google Scholar