Published 2014 | Version v1
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3D gray radiative properties of a radiation hydrodynamic model of a YSO accretion shock

  • 1. LERMA, Observatoire de Paris, CNRS, UMPC, ENS, UCP, 5, place J. Janssen, 92195 Meudon Cedex, (France)
  • 2. Laboratoire AIM, IRFU/Service d'Astrophysique - CEA/DSM - CNRS - Universite Paris Diderot, Bat. 709, CEA-Saclay, F-91191 Gif-sur-Yvette (France)
  • 3. Laboratoire AIM, IRFU / Service d'Astrophysique - CEA/DSM - CNRS - Universite Paris Diderot, Bat. 709, CEA-Saclay, F-91191 Gif-sur-Yvette (France)
  • 4. CEA, IRAMIS, Service Photons, Atomes et Molecules, 91191 Gif-sur-Yvette, (France)

Description

We present preliminary results of radiative properties of a 1D gray radiation hydrodynamic (RHD) model of an accretion shock on a young stellar object (YSO). This model takes into account the transition between the collisional equilibrium regime (local thermodynamic equilibrium, LTE), and the coronal equilibrium regime. Based on the 1D planar structure, we built a 3D cylindrical one. Most notably, the post-shock region obtained in our case is far less extended (by a factor of 10 000) than the typical one obtained with models that assume gray optically thin radiative losses. Moreover, we find that the column is optically thin in its longitudinal dimension, and in the transverse dimension, except over an extremely narrow region (700 m). Consequently, still under the gray assumption, the photons emitted by the hot slab can propagate through the column and escape freely in all directions, including towards the chromosphere. The radiation flux has therefore components that are perpendicular to the accretion column, which demonstrates that a multidimensional (2D or 3D) radiative model is necessary for such a cylindrical structure. This study needs to be taken forward and expanded, by improving the radiative treatment of the RHD model, through relaxation of both the gray and the LTE approximations for the calculation of opacities, in order to clarify the structure of the post-shock region, which is a major source of emission probed by observations. (authors)

Additional details

Publishing Information

Publisher
Orem, US
Imprint Place
N.V. Pogorelov, E. Audit and G.P. Zank (United States)
ISBN
978-1-58381-860-2
Imprint Pagination
7 p.

Conference

Title
8. International Conference on Numerical Modeling of Space Plasma Flows
Acronym
ASTRONUM-2013
Dates
1-5 Jul 2013
Place
Biarritz (France)

INIS

Country of Publication
United States
Country of Input or Organization
France
INIS RN
49039539
Subject category
S71: CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS; S42: ENGINEERING; S79: ASTROPHYSICS, COSMOLOGY AND ASTRONOMY;
Resource subtype / Literary indicator
Conference
Descriptors DEI
FLUID FLOW; HYDRODYNAMIC MODEL; LTE; PHOTONS; PLASMA; RADIATION FLUX
Descriptors DEC
BOSONS; ELEMENTARY PARTICLES; EQUILIBRIUM; MASSLESS PARTICLES; MATHEMATICAL MODELS; PARTICLE MODELS; STATISTICAL MODELS; THERMODYNAMIC MODEL

Optional Information

Notes
19 refs.