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Realization of Tunable Photonic Spin Hall Effect by Tailoring the Pancharatnam-Berry Phase

机译:通过定制Pancharatnam-Berry相实现可调节的光子自旋霍尔效应

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摘要

Recent developments in the field of photonic spin Hall effect (SHE) offer new opportunities for advantageous measurement of the optical parameters (refractive index, thickness, etc.) of nanostructures and enable spin-based photonics applications in the future. However, it remains a challenge to develop a tunable photonic SHE with any desired spin-dependent splitting for generation and manipulation of spin-polarized photons. Here, we demonstrate experimentally a scheme to realize the photonic SHE tunably by tailoring the space-variant Pancharatnam-Berry phase (PBP). It is shown that light beams whose polarization with a tunable spatial inhomogeneity can contribute to steering the space-variant PBP which creates a spin-dependent geometric phase gradient, thereby possibly realizing a tunable photonic SHE with any desired spin-dependent splitting. Our scheme provides a convenient method to manipulate the spin photon. The results can be extrapolated to other physical system with similar topological origins.
机译:光子自旋霍尔效应(SHE)领域的最新发展为纳米结构的光学参数(折射率,厚度等)的有利测量提供了新的机会,并在未来使基于自旋的光子学成为可能。然而,开发具有任何期望的自旋依赖性分裂以产生和操纵自旋极化光子的可调谐光子SHE仍然是挑战。在这里,我们通过实验证明了一种通过调整空间变量Pancharatnam-Berry相(PBP)来可调谐地实现光子SHE的方案。示出了具有可调整的空间不均匀性的偏振的光束可有助于操纵空间变化的PBP,该空间变化的PBP产生自旋相关的几何相位梯度,从而可能实现具有任何所需的自旋相关的分裂的可调谐光子SHE。我们的方案提供了一种方便的方法来控制自旋光子。结果可以外推到具有相似拓扑起源的其他物理系统。

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