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Spatiotemporal Polarization Modulation Microscopy with a Microretarder Array

机译:时空偏振调制显微镜与微延迟阵列。

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A patterned microretarder array positioned in the rear conjugate plane of a microscope enables rapid polarization-dependent nonlinear optical microscopy. The pattern introduced to the array results in periodic modulation of the polarization-state of the incident light as a function of position within the field of view with no moving parts or active control. Introduction of a single stationary optical element and a fixed polarizer into the beam of a nonlinear optical microscope enabled nonlinear optical tensor recovery, which informs on local structure and orientation. Excellent agreement was observed between the measured and predicted second harmonic generation (SHG) of z-cut quartz, selected as a test system with well-established nonlinear optical properties. Subsequent studies of spatially varying samples further support the general applicability of this relatively simple strategy for detailed polarization analysis in both conventional and nonlinear optical imaging of structurally diverse samples.
机译:位于显微镜后共轭平面中的图案化微延迟剂阵列使快速偏振相关的非线性光学显微镜成为可能。引入阵列的图案导致视场中位置的变化而对入射光的偏振态进行周期性调制,而没有移动部件或主动控制。在非线性光学显微镜的光束中引入一个固定的光学元件和一个固定的偏振器,就可以实现非线性光学张量恢复,从而恢复局部结构和取向。 Z切石英的测量和预测二次谐波生成(SHG)之间观察到极好的一致性,被选作具有公认的非线性光学特性的测试系统。随后对空间变化样本的研究进一步支持了这种相对简单的策略的一般适用性,该策略可用于结构多样的样本的常规和非线性光学成像中的详细偏振分析。

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