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Gravitational Lensing from a Spacetime Perspective

机译:时空视角下的引力透镜

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The theory of gravitational lensing is reviewed from a spacetime perspective, without quasi-Newtonian approximations. More precisely, the review covers all aspects of gravitational lensing where light propagation is described in terms of lightlike geodesics of a metric of Lorentzian signature. It includes the basic equations and the relevant techniques for calculating the position, the shape, and the brightness of images in an arbitrary general-relativistic spacetime. It also includes general theorems on the classification of caustics, on criteria for multiple imaging, and on the possible number of images. The general results are illustrated with examples of spacetimes where the lensing features can be explicitly calculated, including the Schwarzschild spacetime, the Kerr spacetime, the spacetime of a straight string, plane gravitational waves, and others.
机译:引力透镜理论是从时空的角度进行回顾的,没有准牛顿近似法。更准确地说,本综述涵盖了引力透镜的所有方面,其中以像洛伦兹签名的度量的光样测地线描述了光传播。它包括基本方程式和相关技术,用于在任意广义相对论时空中计算图像的位置,形状和亮度。它还包括关于焦散的分类,关于多次成像的标准以及关于可能的图像数量的一般性定理。可以用可以明确计算透镜特征的时空示例说明一般结果,包括施瓦兹希尔德时空,克尔时空,直弦的时空,平面重力波等。

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