首页> 外文期刊>The Astrophysical journal >THE INFLUENCE OF ROTATION IN RADIATION-DRIVEN WIND FROM HOT STARS: NEW SOLUTIONS AND DISK FORMATION IN Be STARS
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THE INFLUENCE OF ROTATION IN RADIATION-DRIVEN WIND FROM HOT STARS: NEW SOLUTIONS AND DISK FORMATION IN Be STARS

机译:旋转对热星辐射驱动的风的影响:新的解决方案和形成星的盘

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摘要

The theory of radiation-driven wind including stellar rotation is reexamined. After a suitable change of variables, a new equation for the mass-loss rate is derived analytically. The solution of this equation remains within 1% confidence when compared with numerical solutions. In addition, a nonlinear equation for the position of the critical (singular) point is obtained. This equation shows the existence of an additional critical point besides the standard m-CAK critical point. For a stellar rotation velocity larger than ~0.7-0.8V_(bkup), there exists only one critical point, located away from the star's surface. Numerical solutions crossing through this new critical point are attained. In these cases, the wind has a very low terminal velocity and therefore a higher density. Disk formation in Be stars is discussed in the framework of this new line-driven stellar wind solution.
机译:重新审查了包括恒星旋转的辐射驱动风的理论。在适当地改变变量之后,通过分析得出质量损失率的新方程。与数值解相比,此方程的解保持在1%的置信度内。另外,获得临界点(奇异点)位置的非线性方程。该方程式表明,除了标准的m-CAK临界点之外,还存在其他临界点。对于大于〜0.7-0.8V_(bkup)的恒星旋转速度,只有一个临界点位于远离恒星表面的位置。获得了穿越这个新的临界点的数值解。在这些情况下,风的终端速度非常低,因此密度更高。在这种新的线驱动恒星风解决方案的框架中讨论了Be Star中的磁盘形成。

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