arXiv · 1802.03670
Non-Axisymmetric Line Driven Disc Winds II - Full Velocity Gradient
Abstract
We study non-axisymetric features of 3D line driven winds in the Sobolev approximation, where the optical depth is calculated using the full velocity gradient. We find that non-axisymmetric density features, so called clumps, form primarily at the base of the wind on super-Sobolev length scales. The density of clumps differs by a factor of $\sim 3$ from the azimuthal average, the magnitude of their velocity dispersion is comparable to the flow velocity and they produce $\sim 20\%$ variations in the column density. Clumps may be observable because differences in density produce enhancements in emission and absorption profiles or through their velocity dispersion which enhances line broadening.
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Sergei Dyda, Daniel Proga. 2018-02-11. Non-Axisymmetric Line Driven Disc Winds II - Full Velocity Gradient. https://doi.org/10.1093/mnras%2Fsty1257
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