厚板
光子晶体
极化(电化学)
光束转向
光学
光电子学
波长
光束
材料科学
物理
光子学
梁(结构)
雷
光散射
径向极化
光开关
散射
光子集成电路
可见光谱
作者
Shunben Wu,Xinhao Wang,Xingqi Zhao,L. Chandrasekhara Rao,Wenzhe Liu,Jiajun Wang,Lei Shi,Jian Zi
标识
DOI:10.1002/lpor.202500913
摘要
Abstract The manipulation of light fields using micro/nano photonic structures has become a pivotal area in modern optics, enabling precise control over light propagation and interaction at subwavelength scales. This study demonstrates a high‐efficiency method for steering light beam displacement at optical interfaces through polarization control using a reflective photonic crystal (PhC) slab. The reflective PhC slab enhances cross‐polarization efficiency by reducing scattering channels, facilitating clear observation of beam shifts without the need for additional polarization analysis. By varying the polarization state of incident light, continuous magnitude and direction control over the beam shift at the PhC slab are achieved. In practical experiments, a maximum cross‐polarized efficiency over 74 and the tunable displacement range reaching up to 14 wavelengths at 780 nm are realized. This work proposes an effective approach to realizing controllable beam displacement, while also inspiring future developments in precise and efficient beam steering through photonic band and polarization engineering.
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