晶格常数
格子(音乐)
不对称
小型化
物理
散射
非线性系统
光子晶体
电场
磁场
光子学
环面
凝聚态物理
光学
耦合模理论
计算物理学
偶极子
输电线路
太赫兹辐射
电磁场
法拉第效应
对称性破坏
电磁辐射
双稳态
光电子学
折射率
电感
参数统计
毫米
包层(金属加工)
散射参数
超材料
非线性光学
多极展开
感应耦合
法拉第笼
传播常数
纳米光子学
克尔效应
时域有限差分法
出处
期刊:Nanophotonics
[De Gruyter]
日期:2025-09-29
卷期号:14 (22): 3611-3623
标识
DOI:10.1515/nanoph-2025-0320
摘要
Nonreciprocal devices are key technologies for modern photonic applications, and nonlinearly induced nonreciprocity based on metasurface platforms opens up the potential for compactness and miniaturization of such devices in free-space optical paths. In this work, a design of quasi-bound states in the continuum (QBICs) via scaled lattice constants is employed, featuring a plate-hole tetramer unit cell with single-step etching. Under normal incidence, QBICs exhibit polarization-insensitive excitation, with the scattering dominated by the combination term of magnetic dipoles, magnetic toroidal dipoles, electric quadrupoles as well as electric toroidal quadrupoles - rendering the vertical field distribution sensitive to parametric variations. Embedding Kerr nonlinearity yields nonreciprocal responses under upper and lower port excitation. The steep edges between peaks and valleys in the Fano-line-shaped transmission spectra facilitate balancing the nonreciprocal intensity range (NRIR) and isolation. The NRIR originates from electromagnetic asymmetry introduced by varying the substrate refractive index and can be flexibly tuned via structural parameters - validated by simulations of nonreciprocal responses with varying plate thickness alone. Additionally, Rabi splitting from varying hole depth induces abrupt electromagnetic asymmetry changes in the strong coupling region, offering a new NRIR tuning freedom. This design strategy provides fresh insights for nonreciprocal device research, with the structure holding promise for sensing and nonlinear applications.
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