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Differential confocal technology based on radial birefringent pupil filtering principle

机译:基于径向双折射光瞳滤波原理的微分共焦技术

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摘要

In order to improve the spatial resolution of a confocal system, a radial birefringent pupil filter (RBPF) is introduced into a differential confocal system. RBPF consists of two polarizers with a birefringent element between them, and its pupil function is deduced from Jones matrix. The thickness and curvature radius of RBPF are optimized independently, using the first zero coordinate ratio. The pupil function is modulated by RBPF to enhance the half-width of the response function, and lateral resolution is improved when response curve is changed with the position of RBPF as well as the polarization; then axial super-resolution of the system can be guaranteed using differential confocal detection mechanism. In comparison with conventional pupil filtering technology, RBPF features high lateral resolution and can be easily produced; moreover, it also has a simple structure. Together with its low cost, RBPF provides a new way for the improvement of super-resolution of confocal system. It is indicated from theoretical analysis and preliminary experiments that the lateral resolution can be significantly improved and the measurement error is reduced by 76 nm when measuring a standard grating of period 3 (mu)m; the axial resolution up to 3 nm has been achieved using the optimized pupil filter. In addition to its application for measurement of a small irregular surface in a limited space, the whole differential confocal system proposed can be fitted onto a coordinate measuring machine for non-contact measurement of dimensions and surface roughness.
机译:为了提高共焦系统的空间分辨率,将径向双折射光瞳滤镜(RBPF)引入了差分共焦系统中。 RBPF由两个偏振器组成,它们之间有一个双折射元件,其光瞳函数由琼斯矩阵推导得出。 RBPF的厚度和曲率半径使用第一个零坐标比独立优化。 RBPF对光瞳函数进行调制以增强响应函数的半宽度,并且当响应曲线随RBPF的位置以及极化而改变时,横向分辨率也会提高。那么使用差分共聚焦检测机制就可以保证系统的轴向超分辨率。与传统的瞳孔滤波技术相比,RBPF具有较高的横向分辨率,并且易于生产。而且,它还具有简单的结构。 RBPF成本低廉,为改善共焦系统的超分辨率提供了新途径。从理论分析和初步实验表明,当测量周期为3μm的标准光栅时,横向分辨率可以显着提高,并且测量误差可以减少76 nm。使用优化的光瞳滤光片可实现高达3 nm的轴向分辨率。除了将其用于在有限空间中测量小的不规则表面之外,建议的整个差分共聚焦系统还可以安装在坐标测量机上,用于尺寸和表面粗糙度的非接触式测量。

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