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Longitudinal spin separation of light and its performance in three-dimensionally controllable spin-dependent focal shift

机译:光的纵向自旋分离及其在三维可控自旋相关焦点偏移中的性能

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摘要

Spin Hall effect of light, which is normally explored as a transverse spin-dependent separation of a light beam, has attracted enormous research interests. However, it seems there is no indication for the existence of the longitudinal spin separation of light. In this paper, we propose and experimentally realize the spin separation along the propagation direction by modulating the Pancharatnam-Berry (PB) phase. Due to the spin-dependent divergence and convergence determined by the PB phase, a focused Gaussian beam could split into two opposite spin states, and focuses at different distances, representing the longitudinal spin separation. By combining this longitudinal spin separation with the transverse one, we experimentally achieve the controllable spin-dependent focal shift in three dimensional space. This work provides new insight on steering the spin photons, and is expected to explore novel applications of optical trapping, manipulating, and micromachining with higher degree of freedom.
机译:光的自旋霍尔效应通常被视为光束的横向自旋相关分离,已经引起了巨大的研究兴趣。然而,似乎没有迹象表明存在光的纵向自旋分离。在本文中,我们提出并通过调制Pancharatnam-Berry(PB)相沿传播方向进行自旋分离。由于由PB相位确定的自旋相关散度和会聚,聚焦的高斯光束可以分裂为两个相反的自旋状态,并聚焦在不同的距离处,代表纵向自旋分离。通过将这种纵向自旋分离与横向自旋分离相结合,我们在三维空间中通过实验实现了可控的自旋相关焦点偏移。这项工作为控制自旋光子提供了新的见识,并有望以更高的自由度探索光学捕获,操纵和微加工的新应用。

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