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Gravity mode in gas-dust envelope of an oscillating star

机译:摆动恒星气尘包膜中的重力模式

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摘要

The hydrodynamic mechanism of gravitational coupling between seismic vibrations of a star and fluctuations of gas-dust flows in stellar envelope is discussed. Working from a homogeneous model of a spherical stellar cocoon-a star embedded in a thick dusty shell, the self-consistent equations of hydro-gravity, formulated as a counterpart of equations of hydro-magnetic model of interstellar gas-dynamics, are introduced. Particular attention is given to shear oscillations of ambient gas-dust matter' triggered by seismic pulsations of a star owing its existence to circumstellar gravitational stresses. It is shown that, in the absence of accretion, the frequency of this gravity-driven mode in circumstellar envelope is proportional to the frequency of the g-mode in the star bulk. The implication of the model to a her of current astrophysical problems is briefly discussed.
机译:讨论了恒星的地震振动与恒星包壳中气尘流动波动之间的重力耦合流体动力机理。从球形恒星茧的均质模型(埋在尘土飞扬的厚壳中的恒星)出发,介绍了与星际气体动力学的水磁模型方程相对应的水重力的自洽方程。由于恒星存在恒星引力,因此特别关注由恒星的地震脉动触发的周围气体尘埃物质的剪切振荡。结果表明,在不积聚的情况下,这种重力驱动模式在星际包络中的频率与恒星中g模式的频率成正比。简要讨论了该模型对当前天文学问题的影响。

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