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首页> 外文期刊>The Astrophysical Journal. Letters >Magnetic braking formulation for sun-like stars: Dependence on dipole field strength and rotation rate
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Magnetic braking formulation for sun-like stars: Dependence on dipole field strength and rotation rate

机译:类太阳恒星的电磁制动公式:取决于偶极子场强和旋转速率

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We use two-dimensional axisymmetric magnetohydrodynamic simulations to compute steady-state solutions for solar-like stellar winds from rotating stars with dipolar magnetic fields. Our parameter study includes 50 simulations covering a wide range of relative magnetic field strengths and rotation rates, extending from the slow- and approaching the fast-magnetic-rotator regimes. Using the simulations to compute the angular momentum loss, we derive a semi-analytic formulation for the external torque on the star that fits all of the simulations to a precision of a few percent. This formula provides a simple method for computing the magnetic braking of Sun-like stars due to magnetized stellar winds, which properly includes the dependence on the strength of the magnetic field, mass loss rate, stellar radius, surface gravity, and spin rate, and which is valid for both slow and fast rotators.
机译:我们使用二维轴对称磁流体动力学模拟来计算来自具有偶极磁场的旋转恒星的类太阳恒星风的稳态解。我们的参数研究包括50种模拟,涵盖从相对慢速和接近快速磁转子的范围扩展的相对磁场强度和转速的广泛范围。使用模拟来计算角动量损失,我们得出了恒星外部扭矩的半解析公式,该公式使所有模拟的精度达到百分之几。该公式提供了一种简单的方法,用于计算由于磁化的恒星风引起的太阳状恒星的电磁制动,其中适当地包括对磁场强度,质量损失率,恒星半径,表面重力和自旋率的依赖,以及对于慢速旋转器和快速旋转器均有效。

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