Radiative transfer in circumstellar disks - I. 1D models for GQ Lupi
arXiv:0903.2381 · doi:10.1051/0004-6361/200811536
Abstract
We present a new code for the calculation of the 1D structure and synthetic spectra of accretion disks. The code is an extension of the general purpose stellar atmosphere code PHOENIX and is therefore capable of including extensive lists of atomic and molecular lines as well as dust in the calculations. We assume that the average viscosity can be represented by a critical Reynolds number in a geometrically thin disk and solve the structure and radiative transfer equations for a number of disk rings in the vertical direction. The combination of these rings provides the total disk structure and spectrum. Since the warm inner regions of protoplanetary disks show a rich molecular spectrum, they are well suited for a spectral analysis with our models. In this paper we test our code by comparing our models with high-resolution VLT CRIRES spectra of the T Tauri star GQ Lup.
9 pages, 9 figures, accepted for publication in Astronomy & Astrophysics
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Cited by in corpus (7)
- The slow spin of the young sub-stellar companion GQ Lupi b and its orbital configuration
- Radiation thermo-chemical models of protoplanetary discs. IV Modelling CO ro-vibrational emission from Herbig Ae discs
- Astrometric follow-up observations of directly imaged sub-stellar companions to young stars and brown dwarfs
- Disks and Outflows in CO Rovibrational Emission from Embedded, Low-Mass Young Stellar Objects
- An ALMA and MagAO Study of the Substellar Companion GQ Lup B
- Millimeter Dust Emission in the GQ Lup System
- Accretion-disc model spectra for dwarf-nova stars