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Numerical Study of CollidingWinds in Massive Stars

机译:大质量恒星碰撞风的数值研究

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We run a numerical experiment ejecting stellar winds in a very massive binary system measuring the properties of the resulting colliding wind structure and accreted mass onto the companion under different conditions. Colliding massive binaries interact and create a colliding wind structure with a shape that depends on the momentum ratio, orbital motion, distance between the stars, and other factors. We run simulations of a static LBV-WR binary and in each simulation abruptly varying the mass loss rate of the LBV from the fiducial value. The modified wind front propagates and interacts with the previous colliding wind structure, and modifies its shape. We calculate the emitted X-ray from the interaction and investigate the proprieties of the new shape. We derive the mass accretion rate onto the secondary, and find that it depends on the momentum ratio of the winds. We then add orbital velocity that reduces the mass accretion rate, a similar behaviour as the analytical estimates based on modified Bondi-Hoyle-Lyttleton. Creating a large set of simulations like those presented here can allow constraining parameters for specific colliding wind binaries and derive their stellar parameters and orbital solution.
机译:我们进行了一项数值实验,在一个非常大的双星系统中喷射恒星风,测量由此产生的碰撞风结构的性质和在不同条件下吸积到伴星上的质量。碰撞的大质量双星相互作用并产生碰撞的风结构,其形状取决于动量比、轨道运动、恒星之间的距离和其他因素。我们对静态LBV-WR二进制进行仿真,并在每次仿真中突然改变LBV的质量损失率与基准值。修正后的风锋传播并与先前碰撞的风结构相互作用,并改变其形状。我们计算了相互作用中发射的X射线,并研究了新形状的适当性。我们推导出次级的质量吸积率,发现它取决于风的动量比。然后,我们添加了降低质量吸积率的轨道速度,这与基于修正的Bondi-Hoyle-Lyttleton的分析估计相似。创建大量模拟,如此处介绍的模拟,可以允许约束特定碰撞风双星的参数,并推导出它们的恒星参数和轨道解。

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