Structure measurement of phase grating on post-magnification digital micro-holography

Wenjing Zhou, Yingjie Yu, A. Asundi
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Abstract

It develops a digital micro-holographic optical system to record the magnified hologram (named post-magnification digital micro-holography in this paper), which can suppress the quadratic phase aberration introduced by micro-objective (MO) and the wave-front difference between the object wave and reference wave. In order to show its remarkable trait, post-magnification micro-holography is compared with the traditional digital micro-holography (DMH) (named pre-magnification DMH) from the view of digital processing and aberration eliminating. Their differences are also analyzed by the measurement results of a phase grating with period 30lines/mm and depth 0.3 μm. Fresnel approximation algorithm is used to reconstruct the phase-contrast one of this phase grating. The results show that the presented system is greatly helpful to restrain the quadratic phase error.
后放大数字显微全息相位光栅的结构测量
研制了一种记录放大全息图的数字微全息光学系统(本文称为后放大数字微全息),该系统可以抑制微物镜(MO)引入的二次位相像差和物镜波与参考波之间的波前差。为了显示后放大显微全息术的显著特点,从数字处理和像差消除的角度,将后放大显微全息术与传统的数字显微全息术(称为预放大显微全息术)进行了比较。通过周期为30lines/mm、深度为0.3 μm的相位光栅的测量结果,分析了两者的差异。利用菲涅耳近似算法重构了该相位光栅的相衬系数。结果表明,该系统对抑制二次相位误差有很大的帮助。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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