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Systems and methods for non-destructive evaluation of optical material properties and surfaces

机译:用于无损评估光学材料性能和表面的系统和方法

摘要

System and methods are provided for characterizing an internal surface of a lens using interferometry measurements. Sphere-fitting a distorted radius determines distorted pathlengths. Ray-tracing simulates refraction at all upstream surfaces to determine a cumulative path length. A residual pathlength is scaled by the group-index and rays are propagated based on the phase-index. After aspheric surface fitting, a corrected radius is determined. To estimate a glass type for the lens, a thickness between focal planes of the lens surfaces is determined using RCM measurements. Then, for both surfaces, the surface is positioned into focus, interferometer path length matching is performed, a reference arm is translated to stationary phase point positions for three wavelengths to determine three per-color optical thicknesses, and ray-tracing is performed. A glass type is identified by minimizing an error function based on optical parameters of the lens and parameters determined from known glass types from a database.
机译:提供了使用干涉测量测量表征镜片的内表面的系统和方法。球形拟合扭曲的半径确定扭曲的路径长度。 Ray跟踪在所有上游表面模拟折射以确定累积路径长度。残余路径长度由组索引和光线基于相位索引传播。在非球面拟合之后,确定校正的半径。为了估计镜片的玻璃类型,使用RCM测量确定镜片表面的焦平面之间的厚度。然后,对于两个表面,表面被定位到焦点中,执行干涉仪路径长度匹配,将参考臂转换为用于三个波长的固定相点位置以确定三个每色光学厚度,并且执行射线跟踪。通过基于镜头的光学参数最小化误差功能来识别玻璃类型,以及从数据库中从已知玻璃类型确定的参数。

著录项

  • 公开/公告号US11221211B2

    专利类型

  • 公开/公告日2022-01-11

    原文格式PDF

  • 申请/专利权人 VANDERBILT UNIVERSITY;

    申请/专利号US201916964709

  • 发明设计人 YUANKAI TAO;MOHAMED T. EL-HADDAD;

    申请日2019-01-25

  • 分类号G01B11/255;G01B9/02;G01M11/02;

  • 国家 US

  • 入库时间 2022-08-24 23:18:15

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