首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Classification of lossless first-order optical systems and the linear canonical transformation
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Classification of lossless first-order optical systems and the linear canonical transformation

机译:无损一阶光学系统的分类和线性典范变换

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Based on the eigenvalues of the ray transformation matrix, a classification of ABCD systems is proposed and some nuclei (i.e., elementary members) in each class are described. In the one-dimensional case, possible nuclei are the magnifier, the lens, and the fractional Fourier transformer. In the two-dimensional case we have--in addition to the obvious concatenations of one-dimensional nuclei--the four combinations of a magnifier or a lens with a rotator or a shearing operator, where the rotator and the shearer are obviously inherently two-dimensional. Any ABCD system belongs to one of the classes described in this paper and is similar (in the sense of matrix similarity of the ray transformation matrices) to the corresponding nucleus. Knowledge of a nucleus may be helpful in finding eigenfunctions of the corresponding class of first-order optical systems: one only has to find eigenfunctions of the nucleus and to determine how these functions propagate through a firstorder optical system.
机译:基于射线变换矩阵的特征值,提出了ABCD系统的分类,并描述了每个类别中的一些原子核(即基本成员)。在一维情况下,可能的原子核是放大镜,透镜和分数阶傅立叶变换器。在二维情况下,除了一维原子核的明显连接外,还有放大镜或透镜与旋转器或剪切器的四种组合,其中旋转器和剪切器显然是固有的两个尺寸。任何ABCD系统都属于本文描述的类别之一,并且与相应的原子核相似(就射线转换矩阵的矩阵相似性而言)。了解原子核可能有助于查找相应一类光学系统的本征函数:仅需查找原子核的本征函数并确定这些函数如何通过一阶光学系统传播。

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