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Optical Axis Perturbation Analysis for the Unit-Magnification Multipass System

机译:单位倍率多峰系统的光轴扰动分析

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摘要

The optical axis sensitivity for the unit-magnification multipass system (UMS) is presented by using a general misaligned optical element transfer model. The generalized sensitivity factors SD1, SD2, ST1, and ST2 influenced by both the axial and angular misalignments of the objective mirrors in a UMS have been calculated for the first time. The Bernstein-Herzberg White Cells are used as an example, and their alignment tolerance and stability properties are found when their configurations change. The analysis in this paper is helpful for the design of other kinds of multipass gas cells (MGC) with high robustness and avoiding the violent vibration of the optical axis when the misalignment of each mirror is controlled within the tolerance range. Among the five possible perturbations sources, the misaligned factors δix,δiy,θix have more effects on the output beam’s position and the perturbed sources from δix,θix and δiy,θiy have more impacts on the output beam’s slope referred to as x-axis and y-axis, respectively. Higher reflection times mean smaller tolerance range. The results benefit the multipass cell design and the precise alignment of the mirrors within the cell with the purpose of long-term stability in measurements.
机译:通过使用一般的错位的光学元件传输模型,给出了单位倍率多级系统(UMS)的光轴灵敏度。首次计算出通过UMS中的物镜镜的轴向和角度偏离影响的广义灵敏度因子SD1,SD2,ST1和ST2。伯尔斯坦 - 赫尔兹伯格的白色电池用作示例,并且当它们的配置改变时,可以找到它们的对准公差和稳定性。本文的分析对于具有高稳健性的其他类型的多脂气体电池(MGC)的设计有助于设计,并且当在公差范围内控制每个镜子的未对准时,避免光轴的剧烈振动。在五个可能的扰动源中,错位因子ΔIX,Δiy,θix对输出光束的位置和来自ΔIX,θix和Δiy的扰动源具有更多影响,θiy对称为x轴的输出光束斜率有更多的影响y轴分别。更高的反射时间意味着较小的容差范围。结果有利于多峰电池设计和电池内镜子的精确对准,目的是在测量中的长期稳定性。

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