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Interferometric microimaging based on geometrical spin-redirection phase

机译:基于几何自旋重定向相位的干涉显微成像

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摘要

A novel scheme for an interferometric microscope with which to visualize a geometrical spin-redirection phase image that represents the local inclination of microsurface structures of an object is proposed. The observed phase depends on the state of polarization and the optical constants of the object material, which enable one to distinguish the spin-redirection phase from the conventional dynamical-phase. A preliminary experiment was performed, and the phase images obtained were found to be consistent with those predicted by computer simulation based on a theoretical model.
机译:提出了一种用于干涉显微镜的新方案,该方案可以可视化表示物体微表面结构的局部倾斜的几何自旋重定向相位图像。观察到的相位取决于目标材料的偏振状态和光学常数,这使人们能够将自旋重定向相与传统的动态相区分开。进行了初步实验,发现所获得的相位图像与基于理论模型的计算机仿真预测的相位图像一致。

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