Title: X-rays and regions of star formation: a combined rosat-hri/near-to-mid ir study of the rho oph dark cloud
Abstract: We have obtained two deep exposures of the Oph cloud core region with the ROSAT High Resolution Imager . The improved position accuracy (1 00 -6 00 ) with respect to previous recent X-ray observations (ROSAT PSPC, and ASCA) allows us to remove positional ambiguities for the detected sources. We also cross-correlate the X-ray positions with IR sources found in the ISOCAMsurvey of the same region at 6.7 and 14.3 m, in addition to sources (optical and IR) known from ground-based observations, which are young stars (T Tauri stars, with and without circumstellar disks, and protostars). We thus obtain the best-studied sample of X-ray emitting stars in a star-forming region (63 X-ray sources detected, and 55 identified). We find that there is no statistically significant difference between the X-ray luminosity functions of HRI-detected Class II and Class III sources, i.e., T Tauri stars with and without disks, confirming that the contribution of these disks to X-ray emission (for instance by magnetic reconnection between the star and the disk), or to X-ray absorption, must be small. X-ray variability of T Tauri stars can be studied by com- paring the HRI data with the previously obtained PSPC data, but also using the fact that some HRI observations were done at different epochs. The resulting statistics show that most of the sources are variable, and that their variability is consistent with a solar-like (hence magnetic) flare origin. We use the information given both by the ISOCAM sur- vey and by our HRI deep exposure to study the T Tauri star population of the Oph dense cores. We confirm that essen- tially all Class II and Class III sources (embedded T Tauri stars) are X-ray emitters, and that a strong correlation exists between their X-ray luminosity, LX, and their stellar luminosity, L?, with
Publication Year: 2000
Publication Date: 2000-07-01
Language: en
Type: article
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Cited By Count: 16
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