X-Ray Determination of the Variable Rate of Mass Accretion onto TW Hydrae
arXiv:1211.1710 · doi:10.1088/2041-8205/760/2/L21
Abstract
Diagnostics of electron temperature (T_e), electron density (n_e), and hydrogen column density (N_H) from the Chandra High Energy Transmission Grating spectrum of He-like Ne IX in TW Hydrae (TW Hya), in conjunction with a classical accretion model, allow us to infer the accretion rate onto the star directly from measurements of the accreting material. The new method introduces the use of the absorption of Ne IX lines as a measure of the column density of the intervening, accreting material. On average, the derived mass accretion rate for TW Hya is 1.5 x 10^{-9} M_{\odot} yr^{-1}, for a stellar magnetic field strength of 600 Gauss and a filling factor of 3.5%. Three individual Chandra exposures show statistically significant differences in the Ne IX line ratios, indicating changes in N_H, T_e, and n_e by factors of 0.28, 1.6, and 1.3, respectively. In exposures separated by 2.7 days, the observations reported here suggest a five-fold reduction in the accretion rate. This powerful new technique promises to substantially improve our understanding of the accretion process in young stars.
References in corpus (9)
- Updated Atomic Data and Calculations for X-ray Spectroscopy
- X-ray emission from classical T Tauri stars: Accretion shocks and coronae?
- Turbulence-driven Polar Winds from T Tauri Stars Energized by Magnetospheric Accretion
- The X-ray soft excess in classical T Tauri stars
- X-rays from RU Lupi - Accretion and winds in CTTS
- X-ray emission from dense plasma in CTTSs: Hydrodynamic modeling of the accretion shock
- Why are accreting T Tauri stars observed to be less luminous in X-rays than non-accretors?
- A New Calculation of Ne IX Line Diagnostics
- Accretion, jets and winds: High-energy emission from young stellar objects
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