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基于全介质鱼网光子晶体的紧凑型拓扑极化分束器。

Compact topological polarization beam splitter based on all-dielectric fishnet photonic crystals.

出版信息

Opt Lett. 2023 Jun 15;48(12):3171-3174. doi: 10.1364/OL.492427.

Abstract

Conventional polarization beam splitters (PBSs) suffer energy loss and signal distortion due to backscattering caused by disturbances. Topological photonic crystals provide backscattering immunity and anti-disturbance robustness transmission owing to the topological edge states. Here, we put forward a kind of dual-polarization air hole-type fishnet valley photonic crystal with a common bandgap (CBG). The Dirac points at the K point formed by different neighboring bands for transverse magnetic and transverse electric polarizations are drawn closer via changing the filling ratio of the scatterer. Then the CBG is constructed by lifting the Dirac cones for dual polarizations within a same frequency range. We further design a topological PBS using the proposed CBG via changing the effective refractive index at the interfaces which guide polarization-dependent edge modes. Based on these tunable edge states, the designed topological PBS (TPBS) achieves efficient polarization separation and is robust against sharp bends and defects, verified by simulation results. The TPBS's footprint is approximately 22.4 × 15.2 , allowing high-density on-chip integration. Our work has potential application in photonic integrated circuits and optical communication systems.

摘要

传统的偏振分光器(PBS)由于干扰引起的背散射而导致能量损失和信号失真。拓扑光子晶体由于拓扑边缘态提供了背散射免疫和抗干扰鲁棒传输。在这里,我们提出了一种具有公共带隙(CBG)的双偏振空气孔型鱼网谷光子晶体。通过改变散射体的填充率,可以使横向磁场和横向电场偏振的不同相邻能带的 K 点处的狄拉克点靠近。然后,通过提升双极化在同一频率范围内的狄拉克锥来构建 CBG。我们通过改变界面处的有效折射率来进一步设计使用所提出的 CBG 的拓扑 PBS,从而引导偏振相关的边缘模式。基于这些可调谐的边缘态,所设计的拓扑 PBS(TPBS)实现了高效的偏振分离,并且对尖锐弯曲和缺陷具有鲁棒性,这通过模拟结果得到了验证。TPBS 的占地面积约为 22.4×15.2 ,允许高密度的片上集成。我们的工作在光子集成电路和光通信系统中有潜在的应用。

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