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Ray-trace simulation of the random ball test to improve microlens metrology

机译:随机球测试的射线仿真改进微透镜计量

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Interferometer wavefront bias is a complicated function of the optics imperfections in the instrument. An interferometric measurement of the figure error on a micro-refractive lens requires careful calibration to separate instrument bias from errors on the part. A self-calibration method such as the random ball test is effective in accomplishing this task without the need for a high-quality calibration artifact. The test, an averaging technique applied to a series of sphere surface patches, allows for calibration of the interferometric wavefront bias. Recent studies of the random ball test have shown that the calibration is affected by ray-trace errors that depend on the curvature of the ball used for the test and becomes significant in the micro-optic range (radius less than 1 millimeter). A comprehensive ray-trace simulation of the random ball test with modifiable variables was created using MATLAB® and ZEMAX® to allow for further investigation into the relationship between test lens misalignment, curvature, numerical aperture, ball figure error, and interferometer bias. The basis for the model hinges on defining a sphere in terms of a set of spherical harmonic functions, and varying the amplitudes and the number of functions to adjust the figure error on the sphere. The flexible simulation can be fine-tuned and used to model a variety of interferometers with different specifications. Our ultimate goal is to confirm the validity of the RBT, determine an efficient method of implementation, and understand the aspects impacting calibration uncertainty.
机译:干涉仪波前偏置是仪器中光学缺陷的复杂功能。微折射镜头上的图形误差的干涉测量需要仔细校准,以将仪器偏置与零件的误差分开。一种自校准方法,例如随机球测试是有效实现这项任务,而无需高质量的校准伪影。测试,应用于一系列球面贴片的平均技术,允许校准干涉波前偏压。最近对随机球测试的研究表明,校准受射线痕量误差的影响,这取决于用于测试的球的曲率​​,并且在微光学范围内变得显着(半径小于1毫米)。使用Matlab®和Zemax®创建具有可修改变量的随机球测试的全面径向仿真,以便进一步调查测试镜头未对准,曲率,数值孔径,球形误差和干涉仪偏置之间的关系。模型铰链在一组球形谐波函数方面定义领域的基础,并改变幅度和函数的数量来调整球体上的图形误差。灵活的模拟可以进行微调,用于模拟具有不同规格的各种干涉仪。我们的最终目标是确认RBT的有效性,确定有效的实施方法,并了解影响校准不确定性的方面。

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