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Structure of the shock at the surface of CTTS

A steady-state structure and spectrum of the accretion zone at the surface of T Tauri stars are numerically simulated. This modeling uses well-developed methods of the theory of stellar atmospheres with inclusion of the effects of the gas motion (advection and the doppler shift of the lines). The spectrum $I_ν(μ)$ and cooling rate of shocked gas are calculated. It is found that at the pre-shock densities $N_0>10^{13}$ cm$^{-3}$ helium and hydrogen lines show a red-shifted absorption, significantly broadened by the Stark effect.

preprint2016arXivOpen access

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