English

M Stars in the TW Hya Association: Stellar X-rays and Disk Dissipation

Solar and Stellar Astrophysics 2016-06-22 v1

Abstract

To investigate the potential connection between the intense X-ray emission from young, low-mass stars and the lifetimes of their circumstellar, planet-forming disks, we have compiled the X-ray luminosities (LXL_X) of M stars in the \sim8 Myr-old TW Hya Association (TWA) for which X-ray data are presently available. Our investigation includes analysis of archival Chandra data for the TWA binary systems TWA 8, 9, and 13. Although our study suffers from poor statistics for stars later than M3, we find a trend of decreasing LX/LbolL_X/L_{bol} with decreasing TeffT_{eff} for TWA M stars wherein the earliest-type (M0--M2) stars cluster near log(LX/Lbol)3.0\log{(L_X/L_{bol})} \approx -3.0 and then log(LX/Lbol)\log{(L_X/L_{bol})} decreases, and its distribution broadens, for types M4 and later. The fraction of TWA stars that display evidence for residual primordial disk material also sharply increases in this same (mid-M) spectral type regime. This apparent anticorrelation between the relative X-ray luminosities of low-mass TWA stars and the longevities of their circumstellar disks suggests that primordial disks orbiting early-type M stars in the TWA have dispersed rapidly as a consequence of their persistent large X-ray fluxes. Conversely, the disks orbiting the very lowest-mass pre-MS stars and pre-MS brown dwarfs in the Association may have survived because their X-ray luminosities and, hence, disk photoevaporation rates are very low to begin with, and then further decline relatively early in their pre-MS evolution.

Keywords

Cite

@article{arxiv.1603.09307,
  title  = {M Stars in the TW Hya Association: Stellar X-rays and Disk Dissipation},
  author = {Joel H. Kastner and David A. Principe and Kristina Punzi and Beate Stelzer and Uma Gorti and Ilaria Pascucci and Costanza Argiroffi},
  journal= {arXiv preprint arXiv:1603.09307},
  year   = {2016}
}

Comments

28 pages, 4 figures; to appear in The Astronomical Journal

R2 v1 2026-06-22T13:21:43.302Z