Hu Hao, Qi Jiwei, Wu Qiang, Fu Xianhui, Wu Hongjin, Zhang Sihao, Chen Zongqiang, Chen Jing, Yao Jianghong, Yu Xuanyi, Sun Qian, Xu Jingjun
Key Laboratory of Weak-Light Nonlinear Photonics, Ministry of Education, TEDA Institute of Applied Physics and School of Physics, Nankai University, Tianjin, 300457, China.
Collaborative Innovation Center of Extreme Optics, Shanxi University, Taiyuan, 030006, Shanxi, China.
Nanoscale Res Lett. 2021 Dec 7;16(1):175. doi: 10.1186/s11671-021-03634-8.
We designed a simple on-chip integrated optical isolator made up of a metal-insulator-metal waveguide and a disc cavity filled with magneto-optical material to enhance the transverse magneto-optical effect through the coin paradox spin-orbit interaction (SOI). The simulation results of the non-reciprocal transmission properties of this optical structure show that a high-performance on-chip integrated optical isolator is obtained. The maximum isolation ratio is greater than 60 dB with a corresponding insertion loss of about 2 dB. The great performance of the optical isolator is attributed to the strong transverse magneto-optical effect, which is enhanced by the coin paradox SOI. Moreover, the enhancement of the transverse magneto-optical effect through the coin paradox SOI is more substantial for smaller azimuthal mode number n. Benefiting from this, the transverse magneto-optical effect remains strong in a wide wavelength range. Additionally, a smaller cavity has a stronger transverse magneto-optical effect in the same wavelength range. Our research provides a new perspective for creating highly integrated magneto-optical devices.
我们设计了一种简单的片上集成光学隔离器,它由金属-绝缘体-金属波导和填充有磁光材料的圆盘腔组成,以通过硬币悖论自旋轨道相互作用(SOI)增强横向磁光效应。该光学结构的非互易传输特性的模拟结果表明,获得了高性能的片上集成光学隔离器。最大隔离比大于60 dB,相应的插入损耗约为2 dB。光学隔离器的优异性能归因于强横向磁光效应,该效应通过硬币悖论SOI得到增强。此外,对于较小的方位模数n,通过硬币悖论SOI增强横向磁光效应更为显著。受益于此,横向磁光效应在很宽的波长范围内都保持很强。此外,在相同波长范围内,较小的腔具有更强的横向磁光效应。我们的研究为创建高度集成的磁光器件提供了新的视角。