Two-dimensional simulations of the line-driven instability in hot-star winds

被引:92
作者
Dessart, L
Owocki, SP
机构
[1] Max Planck Inst Astrophys, D-85740 Garching, Germany
[2] Univ Delaware, Bartol Res Inst, Newark, DE 19716 USA
来源
ASTRONOMY & ASTROPHYSICS | 2003年 / 406卷 / 01期
关键词
line : formation; radiative transfer; stars : atmospheres; stars : early type; stars : mass loss;
D O I
10.1051/0004-6361:20030810
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We report initial results of two-dimensional simulations of the nonlinear evolution of the line-driven instability (LDI) in hot-star winds. The method is based on the Smooth Source Function (SSF) formalism for nonlocal evaluation of the radial line-force, implemented separately within each of a set of radiatively isolated azimuthal grid zones. The results show that radially compressed "shells" that develop initially from the LDI are systematically broken up by Rayleigh-Taylor or thin-shell instabilities as these structures are accelerated outward. Through radial feedback of backscattered radiation, this leads ultimately to a flow structure characterized by nearly complete lateral incoherence, with structure extending down to the lateral grid scale, which here corresponds to angle sizes of order a fifth of a degree. We briefly discuss the implications for interpreting various observational diagnostics of wind structure, but also emphasize the importance of future extensions to include lateral line-drag effects of diffuse radiation, which may set a minimum lateral scale for break-up of flow structure.
引用
收藏
页码:L1 / L4
页数:4
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