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首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >The Gaussian formula and spherical aberrations of static and relativistic curved mirrors from Fermat's principle
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The Gaussian formula and spherical aberrations of static and relativistic curved mirrors from Fermat's principle

机译:基于费马原理的静态和相对论曲面镜的高斯公式和球差

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摘要

The Gaussian formula and spherical aberrations of static and relativistic curved mirrors are analyzed using the optical path length (OPL) and Fermat's principle. The geometrical figures generated by the rotation of conic sections about their symmetry axes are considered for the shapes of the mirrors. By comparing the results in static and relativistic cases, it is shown that the focal lengths and the spherical aberration relations of the relativistic mirrors obey the Lorentz contraction. Further analysis of the spherical aberrations for both static and relativistic cases have resulted in information about the limits for the paraxial approximation, as well as for the minimum speed of the systems to reduce the spherical aberrations.
机译:静态和相对论曲面镜的高斯公式和球面像差使用光程长度(OPL)和费马原理进行了分析。对于反射镜的形状,可以考虑通过圆锥形部分绕其对称轴旋转而生成的几何图形。通过比较静态和相对论情况下的结果,表明相对论镜的焦距和球差关系服从洛伦兹收缩。对静态和相对论情况下球面像差的进一步分析,得出了有关近轴近似极限以及减小球面像差的最小系统速度的信息。

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