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首页> 外文期刊>The Astrophysical journal >INHIBITION OF WIND-COMPRESSED DISK FORMATION BY NONRADIAL LINE FORCES IN ROTATING HOT-STAR WINDS
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INHIBITION OF WIND-COMPRESSED DISK FORMATION BY NONRADIAL LINE FORCES IN ROTATING HOT-STAR WINDS

机译:用非径向线力抑制旋转恒星风中的风压盘形成

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摘要

We investigate the effects of nonradial line forces on the formation of a "wind-compressed disk" (WCD) around a rapidly rotating B star. Such nonradial forces can arise both from asymmetries in the line resonances in the rotating wind and from rotational distortion of the stellar surface. They characteristically include a latitudinal force component directed away from the equator and an azimuthal force component acting against the sense of rotation. Here we present results from radiation-hydrodynamical simulations showing that these nonradial forces can lead to an effective suppression of the equatorward flow needed to form a WCD as well as a modest (~20%) spin-down of the wind rotation. Furthermore, contrary to previous expectations that the wind mass flux should be enhanced by the reduced effective gravity near the equator, we show here that gravity darkening effects can actually lead to a reduced mass loss, and thus lower density, in the wind from the equatorial region. Overall, the results here thus imply a flow configuration that is markedly different from that derived in previous models of winds from rotating early-type stars. In particular, a major conclusion is that equatorial wind compression effects should be effectively suppressed in any radiatively driven stellar wind for which, as in the usual CAK formalism, the driving includes a significant component from optically thick lines. This presents a serious challenge to the WCD paradigm as an explanation for disk formation around Be and other rapidly rotating hot stars thought to have CAK-type, line-driven winds.
机译:我们研究了非径向线力对快速旋转的B星周围“风压盘”(WCD)形成的影响。这种非径向力既可以由旋转风中线共振的不对称性产生,也可以由恒星表面的旋转变形引起。它们典型地包括背离赤道的纬向力分量和与旋转方向相反的方位角力分量。在这里,我们给出了辐射流体动力学模拟的结果,这些结果表明,这些非径向力可以有效抑制形成WCD所需的赤道流以及适度(〜20%)的自旋向下旋转。此外,与先前的预期相反,应该通过减少赤道附近的有效重力来增强风量通量,在此我们证明,重力变暗效应实际上可以导致赤道风中的质量损失减少,从而密度降低。区域。总的来说,这里的结果因此暗示着一种流动配置,该流动配置与先前的旋转早期型恒星风模型得出的流动配置明显不同。特别是,一个主要结论是,在任何辐射驱动的恒星风中都应有效地抑制赤道风的压缩效应,为此,如同通常的CAK形式论一样,该驱动包括来自光学粗线的重要分量。这是对WCD范式的一个严峻挑战,因为它解释了Be和其他快速旋转的热恒星周围的盘状形成,这些恒星被认为具有CAK型的线驱动风。

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