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Numerical solutions of ideal two-fluid equations very closed to the event horizon of Schwarzschild black hole

机译:非常接近Schwarzschild黑洞事件视界的理想二流体方程的数值解

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摘要

The 3+1 formalism of Thorne, Price and MacDonald has been used to derive the linear two-fluid equations describing transverse and longitudinal waves propagating in the two-fluid ideal collisionless plasmas surrounding a Schwarzschild black hole. The plasma is assumed to be falling in radial direction toward the event horizon. The relativistic two-fluid equations have been reformulate, in analogy with the special relativistic formulation as explained in an earlier paper, to take account of relativistic effects due to the event horizon. Here a WKB approximation is used to derive the local dispersion relation for these waves and solved numerically for the wave number k.
机译:Thorne,Price和MacDonald的3 + 1形式主义已被用来推导线性两流体方程,该方程描述了在Schwarzschild黑洞周围的两流体理想无碰撞等离子体中传播的横向和纵向波。假定等离子体沿径向方向朝着事件范围下降。相对论二流体方程已经过重新公式化,类似于先前论文中解释的特殊相对论公式,以考虑由于事件视界而产生的相对论效应。在这里,使用WKB近似来推导这些波的局部色散关系,并通过数值求解波数k。

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