物理
几何相位
凝聚态物理
自旋(空气动力学)
主轴定理
电场
偶像
各向异性
光学
光子晶体
光子
量子力学
几何学
热力学
数学
计算机科学
程序设计语言
作者
X. C. Xie,Hongdao Cheng,Huifeng Chen,Huadan Zheng,Yongchun Zhong,Jieyuan Tang,Jianhui Yu,Zhe Chen,Wenguo Zhu
标识
DOI:10.1103/physrevlett.134.113805
摘要
Here, a novel photonic spin Hall effect is demonstrated based on the spatially varying Pancharatnam-Berry (PB) phases, aroused naturally in an X-cut LiTaO_{3} crystal via the Pockels effect. Applied with an electric field, the principal axes of crystal will rotate around the x-axis with the rotation angle varying linearly with the y component of the applied field. By depositing an asymmetric electrode pair on the crystal to induce inhomogeneously distributed electric fields, spatially varying rotations of the principal axes of crystal are generated, resulting in spatially varying PB phases. These spatially varying PB phases are redistributable by the applied voltage, different from those unchangeable PB phases aroused by the spatially varying orientations of anisotropic structure units such as patterned liquid crystals and metasurfaces. The redistributable PB phases can cause tunable separations of spin photons in the momentum space. The separation speed is measured as ∼0.16 GHz. These findings deepen the understanding of the geometric phase and pave the way for high-speed control of spin photons.
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