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Deformation analysis of curved surfaces in holographic Interferometry with similar remarks concerning nonspherical gravitational fields

机译:全息干涉测量中曲面的变形分析,具有与非球形引力田的类似言论

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First, the principles of large deformation analysis in holographic Interferometry are briefly outlined. Modifications at the reconstruction should recover the invisible fringes. The spacing and the contrast are characterized by the fringe and visibility vectors. The relevant derivative of the path difference involves the polar decomposition of the deformation, affine connections, the image aberration and changes of geodesic and surface curvatures. These specific considerations lead in a second part to similar aspects for hypersurfaces and to an interpretation of the Schwarzschild-solution by virtual deformations. Remarks concerning nonspherical gravitational fields including null-geodesies or light rays are added Third, an approach to the Kerr-solution for rotating bodies and aspects of the TOV-equation for the interior are given.
机译:首先,简要概述了全息干涉测量中大变形分析的原理。重建的修改应恢复无形的条纹。间隔和对比度的特征在于边缘和可见性矢量。路径差的相关衍生涉及变形,仿射连接,图像像差和测地和表面曲率的变化的极性分解。这些特定的考虑因素在第二部分中引导到过度覆盖的类似方面,并通过虚拟变形来解释Schwarzschild-求解。提醒关于包括零地射射或光线的非球形重力场,给出了用于旋转体的kerr溶液的方法和内部的TOV等方程的方面。

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