限制器
光隔离器
材料科学
光学
限制
传输(电信)
光电子学
非线性系统
调制(音乐)
互惠的
非线性光学
激光器
非线性光学
光学滤波器
红外线的
光开关
干扰(通信)
交叉相位调制
自相位调制
相(物质)
电子工程
传动系统
光通信
光学性能监测
光放大器
作者
Feifei Ren,Huan Guan,Yanke Chang,Changqi Zhou,Chengdong Tao,Song Zhao,Jinxin Gu,Xi Chen,J. Zhao,Shuliang Dou,Yao Li
标识
DOI:10.1002/lpor.202502538
摘要
ABSTRACT This study presents nonreciprocal and reciprocal nonlinear optical limiters based on vanadium dioxide and multilayer optical interference structures, achieving modulation ranges of 86% and 92% with transmission contrasts of 97.8% and 98.9%, along with excellent temperature‐dependent transmission control. The influences of film structure, doping characteristics, and bias temperature on the optical limiting properties and mechanisms were systematically investigated through laser irradiation experiments. Notably, the asymmetric configuration exhibits pronounced nonreciprocal behavior in optical transmittance, achieving an isolation ratio of ∼8, and holds great promise for various optical isolation applications. Experimental results demonstrate that incorporating an optical limiter reduces laser‐induced spot area to ∼15% of its original size in infrared detection, highlighting their potential for advanced optical protection systems. The limiter designs offer both practical and theoretical advancements in nonlinear optical limiting and isolation, demonstrating a practical platform and theoretical methodology for advanced applications.
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