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Near-Horizon Geodesics for Astrophysical and Idealised Black Holes: Coordinate Velocity and Coordinate Acceleration

机译:天文学和理想黑洞的近视测地线:坐标速度和坐标加速度

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Geodesics (by definition) have an intrinsic 4-acceleration zero. However, when expressed in terms of coordinates, the coordinate acceleration d 2 x i / d t 2 can very easily be non-zero, and the coordinate velocity d x i / d t can behave unexpectedly. The situation becomes extremely delicate in the near-horizon limit—for both astrophysical and idealised black holes—where an inappropriate choice of coordinates can quite easily lead to significant confusion. We shall carefully explore the relative merits of horizon-penetrating versus horizon-non-penetrating coordinates, arguing that in the near-horizon limit the coordinate acceleration d 2 x i / d t 2 is best interpreted in terms of horizon-penetrating coordinates.
机译:测地线(根据定义)具有固有的4加速度零。然而,当以坐标表示时,坐标加速度d 2 x i / d t 2可以很容易地为非零,并且坐标速度d x i / d t可能会出乎意料地表现。对于天体物理黑洞和理想黑洞而言,这种情况在近地平线范围内变得极为微妙,在这种情况下,不适当的坐标选择很容易导致明显的混乱。我们将仔细探究地平线穿透坐标与非地平线穿透坐标的相对优点,认为在近地平线范围内,最好以透视地平线坐标来解释坐标加速度d 2 x i / d t 2。

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