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X-ray sources in regions of star formation. V. The low mass stars of the upper Scorpius association

  • United States Navy
  • National Optical Astronomy Observatory
  • University of Wisconsin-Madison
  • Harvard-Smithsonian Ctr. Astrophys.
  • University of Colorado Boulder
  • NASA Infrared Telescope Facility

Research output: Contribution to journalArticlepeer-review

165 Scopus citations

Abstract

We report followup investigations of Einstein x-ray observations of the Upper Scorpius OB association. We identify 28 low mass pre-main-sequence stars as counterparts of x-ray sources in the ∼7 square degrees of the OB association observed. Based on kinematics and lithium abundances, these stars are low mass members of the OB association. We use optical spectra and optical and near-IR photometry to determine the stellar luminosities, effective temperatures, masses, and ages. We show that the bolometric corrections and effective temperatures of the G and K stars are consistent with those of subgiants. The low mass stars have isochronal ages of 1-2 Myr, depending on the choice of evolutionary models, with very small dispersion (σ≈1 Myr). This age is significantly younger than the 5-6 Myr found for the more massive B stars. The small dispersion in stellar ages, less than 10% the sound-crossing time of the association, suggests that star formation was triggered. We present two scenarios for star formation in this association. In the two-episode scenario, formation of the low mass stars was triggered by a supernova explosion, and the low mass stars form quickly, with high efficiency. Alternatively, high and low mass star formation was all initiated at the same time, some 5-6 Myr ago, and the apparent systematic age difference is an artifact of how the isochrones are dated. The effect of the supernova is to terminate mass accretion and yield an apparently coeval population. We show that the incompleteness in the x-ray sampling is about 65%, and is strongly dependent on stellar mass. After correction for incompleteness, we estimate there are about 2000 low mass members (script M sign <2script M sign) of this association. The mass function in this association is indistinguishable from that of the field. The ratio of naked to classical T Tauri stars is much larger than in Tau-Aur, and may be attributable to the local environment. We also present observations of eight ROX sources associated with the ρ Oph cloud, and observations of non-PMS stars in our fields.

Original languageEnglish
Pages (from-to)692-719
Number of pages28
JournalAstronomical Journal
Volume107
Issue number2
DOIs
StatePublished - Feb 1994

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