The X-ray activity-rotation relation of T Tauri stars in Taurus-Auriga
arXiv:astro-ph/0701422 · doi:10.1051/0004-6361:20066823
Abstract
The Taurus-Auriga star-forming complex hosts the only population of T Tauri stars in which an anticorrelation of X-ray activity and rotation period has been observed. We have used XMM-Newton's European Photon Imaging Cameras to perform the most sensitive survey to date of X-ray emission (0.3-10 keV) from young stars in Taurus-Auriga and investigate the dependences of X-ray activity measures -- X-ray luminosity, Lx, its ratio with the stellar luminosity, Lx/Lstar, and the surface-averaged X-ray flux, Fxs -- on rotation period. We tested for differences in the distributions of Lx/Lstar of fast and slow rotators, accretors and non-accretors, and compared the dependence of Lx/Lstar on the ratio of the rotation period and the convective turnover timescale, the Rossby number, with that of late-type main-sequence stars. We found significant anticorrelations of Lx and Fxs with rotation period, but these could be explained by the typically higher stellar luminosity and effective temperature of fast-rotators in Taurus-Auriga and a near-linear dependence of Lx on Lstar. We found no evidence for a dependence of Lx/Lstar on rotation period, but for accretors to have lower Lx/Lstar than non-accretors at all rotation periods. The Rossby numbers of accretors and non-accretors were found to be the same as those of late-type main-sequence stars showing saturated X-ray emission. We conclude that non-accreting T Tauri stars show X-ray activity entirely consistent with the saturated activity of late-type main-sequence stars. Accreting T Tauri stars show lower X-ray activity, which cannot be attributed to their slower rotation.
13 pages, 8 figures (14 eps files). Accepted by A&A, to appear in a special section/issue dedicated to the XMM-Newton Extended Survey of the Taurus Molecular Cloud
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- The XMM-Newton Extended Survey of the Taurus Molecular Cloud (XEST)
- The active lives of stars: a complete description of rotation and XUV evolution of F, G, K, and M dwarfs
- X-ray Emission from T Tauri Stars and the Role of Accretion: Inferences from the XMM-Newton Extended Survey of the Taurus Molecular Cloud
- Age Gradients in the Stellar Populations of Massive Star Forming Regions Based on a New Stellar Chronometer
- IN-SYNC I: Homogeneous Stellar Parameters from High Resolution APOGEE Spectra for Thousands of Pre-main Sequence Star
- A statistical analysis of X-ray variability in pre-main sequence objects of the Taurus Molecular Cloud
- High-resolution Spectroscopy of [Ne II] Emission from TW Hya
- Observation of enhanced X-ray emission from the CTTS AA Tau during a transit of an accretion funnel
- Optical spectroscopy of X-ray sources in the Taurus molecular cloud: discovery of ten new pre-main sequence stars
- Time-dependent, long-term hydrodynamic simulations of the inner protoplanetary disk II: The importance of stellar rotation
- High Energy Emission and its Variability in Young Stellar Objects
- Do accretion-powered stellar winds help spin down T Tauri stars?