Bidirectional nonreciprocal transmission in a silicon metasurface with high-Q guided-mode resonances
作者:Junxian Shi, Shuai Li, Yuan Liu, Zhengqi Liu, Xianping Wang, Jing Chen, Xiaoshan Liu, Guiqiang Liu · 发表于:Figshare · 年份:2026 · DOI:10.6084/m9.figshare.c.7942835.v1 · 研究领域:Optoelectronics、Materials science、Optics、Physics、Electronic engineering
Nonreciprocal transport is indispensable for many modern optical devices. However, traditional nonreciprocal devices heavily depend on external bias. Achieving significant nonreciprocity in practice remains challenging. In this work, we propose a Kerr-nonlinearity-based design to achieve strong nonreciprocal transmission. By leveraging high-Q guided-mode resonances (GMRs) in a Si waveguide nanostructure decorated with periodic grooves, we demonstrate magnetic-free bidirectional nonreciprocal transmission and isolation. A large nonreciprocal intensity range (NRIR ≈ 3.7) is achieved through parameter tuning under the low pump power intensity. Simultaneously, high-performance bidirectional isolation behaviors are realized including a 56.3 dB isolation with 6.16 dB insertion loss in the forward transmission and 43.8 dB isolation with 1.55 dB insertion loss in the reverse transmission. This design offers a versatility for applications in optical communication, optical switches, and bidirectional nonreciprocal devices.