各向异性
各向同性
光学
布鲁斯特角
凝聚态物理
极化(电化学)
材料科学
电介质
光子学
调制(音乐)
物理
光电子学
布鲁斯特
化学
声学
物理化学
作者
Shuai Lin,Zuhai Ma,Jiahao Hong,Gan Wan,Yu Chen,Xinxing Zhou
出处
期刊:Optics Express
[Optica Publishing Group]
日期:2023-05-02
卷期号:31 (11): 17909-17909
被引量:6
摘要
As the in-plane spin splitting (IPSS) has a broad application for the precision measurement and sensing, it is extremely important to explore its enhancement mechanism via the photonic spin Hall effect (PSHE). However, for a multilayer structure, the thickness in most of previous works is generally set as a fixed value, lacking the deeply exploration of the influence of thickness on the IPSS. By contrast, here we demonstrate the comprehensive understanding of thickness-dependent IPSS in a three layered anisotropic structure. As thickness increases, near the Brewster angle, the enhanced in-plane shift exhibits a thickness-dependently periodical modulation, besides with much wider incident angle than that in an isotropic medium. While near the critical angle, it becomes thickness-dependently periodical or linear modulation under different dielectric tensors of the anisotropic medium, no longer keeps almost constant in an isotropic medium. In addition, as exploring the asymmetric in-plane shift with arbitrary linear polarization incidence, the anisotropic medium could bring more obvious and wider range of thickness-dependently periodical asymmetric splitting. Our results deepen the understanding of enhanced IPSS, which is expected to promise a pathway in an anisotropic medium for the spin control and integrated device based on PSHE.
科研通智能强力驱动
Strongly Powered by AbleSci AI