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Photonic spin Hall effect for precision metrology

机译:光子自旋霍尔效应用于精密计量

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The photonic spin Hall effect (SHE) is generally believed to be a result of an effective spin-orbit coupling, which describes the mutual influence of the spin (polarization) and the trajectory of the light beam. The photonic SHE holds great potential for precision metrology owing to the fact that the spin-dependent splitting in photonic SHE are sensitive to the physical parameter variations of different systems. Remarkably, using the weak measurements, this tiny spin-dependent shifts can be detected with the desirable accuracy so that the corresponding physical parameters can be determined. Here, we will review some of our works on using photonic SHE for precision metrology, such as measuring the thickness of nanometal film, identifying the graphene layers, detecting the strength of axion coupling in topological insulators, and determining the magneto-optical constant of magnetic film.
机译:通常认为光子自旋霍尔效应(SHE)是有效自旋轨道耦合的结果,该耦合描述了自旋(偏振)和光束轨迹的相互影响。由于光子SHE中自旋相关的分裂对不同系统的物理参数变化敏感,因此,光子SHE在精密计量方面具有巨大潜力。值得注意的是,使用弱测量,可以以所需的精度检测到这种微小的自旋相关移动,从而可以确定相应的物理参数。在这里,我们将回顾一些有关使用光子SHE进行精密计量的工作,例如,测量纳米金属膜的厚度,识别石墨烯层,检测拓扑绝缘体中的轴突耦合强度以及确定磁场的磁光常数。电影。

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