Post-T Tauri stars: a false problem
arXiv:astro-ph/9612139 · doi:10.1086/310496
Abstract
We consider the problem of the apparent lack of old T Tauri stars in low-mass star forming regions in the framework of the standard model of low-mass star formation. We argue that the similarity between molecular cloud lifetime and ambipolar diffusion timescale implies that star formation does not take place instantaneously, nor at a constant rate. We conclude that the probability of finding a large population of old stars in a star forming region is intrinsically very small and that the post-T Tauri problem is by and large not existent.
6 pages (LaTeX), no Figures to be published in The Astrophysical Journal Letters
Cited by in corpus (13)
- Rapid Formation of Molecular Clouds and Stars in the Solar Neighborhood
- 2MASS Observations of the Perseus, Orion A, Orion B, and Monoceros R2 Molecular Clouds
- Turbulent Flow-Driven Molecular Cloud Formation: A Solution to the Post-T Tauri Problem?
- The Stellar Population of the Chamaeleon I Star-Forming Region
- A Catalogue of Optically Selected Cores
- A New Association of Post-T Tauri Stars Near The Sun
- The Greater Taurus-Auriga Ecosystem I: There Is A Distributed Older Population
- A Long-Lived Accretion Disk Around a Lithium-Depleted Binary T Tauri Star
- The Structures of Distant Galaxies - IV: A New Empirical Measurement of the Time-Scale for Galaxy Mergers - Implications for the Merger History
- Undetected Binary Stars Cause an Observed Mass Dependent Age Gradient in Upper Scorpius
- Protostellar Jets and Turbulence in Molecular Clouds: The Role of Interactions
- SPH Simulations of Galactic Gaseous Disk with Bar: Distribution and Kinematic Structure of Molecular Clouds toward the Galactic Center
- Young Stellar Objects in NGC 6823