光子晶体
光电子学
材料科学
光子学
光学
亚布朗维特
宽带
极化(电化学)
光子集成电路
波导管
平面波展开
路由器
横截面
光子晶体光纤
硅光子学
时域有限差分法
窄带
横模
电场
光子超材料
平面的
炸薯条
太赫兹辐射
作者
Kenneth Xin Jie Ho,Yi Ji Tan,Ranjan Singh
出处
期刊:
日期:2026-07-01
卷期号:1 (3)
摘要
Photonic crystals serve as a powerful platform for guiding light in ultra-compact geometries. However, in two-dimensional photonic crystals, overlapping transverse electric (TE) and transverse magnetic (TM) bandgaps cannot be realized with identical permittivities. Here, we achieve a complete photonic bandgap on a chip by exploiting the difference in two-dimensional effective permittivities for TE and TM modes in lossless silicon photonic crystal slabs with hexagonal air holes arranged in a honeycomb lattice. We leverage the valley degree of freedom to design dual polarization waveguide modes that exist below the light cone and achieve field confinement within the photonic crystal slab. This waveguide also offers broadband transmission for both polarizations, unlike traditional narrowband TE-polarized-only valley photonic crystal with triangle air holes. We further utilize the valley-conserved properties of TE-polarized waveguide modes to design and fabricate an on-chip polarization router through interfacial engineering. Our work demonstrates one of the first experimental realizations of a dual TE/TM polarized valley photonic crystal waveguide, enabling polarization-multiplexed functionality for integrated THz photonics. This progress enables high-performance on-chip and inter-chip interconnects, underpinning future AI systems, data center scalability, and emerging 6G communication systems.
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