铌酸锂
材料科学
波克尔效应
光电子学
制作
光学
光调制器
调制(音乐)
相位调制
聚焦离子束
激光束
激光器
梁(结构)
光子学
电光调制器
带宽(计算)
频率调制
光子集成电路
分束器
纳米尺度
集成光学
铁电性
相容性(地球化学)
光通信
调幅
光子晶体
纳米光子学
纳米线
电光
电子束光刻
光隔离器
谐振器
谐振腔
光学工程
作者
Liu Jikun,LIU Weiye,Wu Wei,Guo Ziang,Zhu, Changrui,Qu Lun,Zhu Pengfei,Zhang YiTing,Chen Zhihao,Li Qinglian,Zheng, Dahuai,Liu Hongde,Wang Shaowei,Cai Wei,Ren Mengxin,Xu Jing-Jun
标识
DOI:10.48550/arxiv.2511.02202
摘要
Electro-optic modulators (EOMs) are vital for optical imaging and information processing, with free-space devices enabling LiDAR and beam control. Lithium niobate (LN), powered by the strong Pockels effect and scalable LN-on-insulator (LNOI) platform, has become a leading material for high-performance EOMs. Here we realize a vertical-cavity EOM in which an LN membrane is sandwiched between two photonic crystal (PhC) mirrors with integrated electrodes. The cavity supports sharp defect-mode resonances that shift efficiently under the Pockels effect, enabling strong modulation of transmission. Experiments show a depth of 43 % at 50 V and a bandwidth of 5 MHz. This architecture combines free-space compatibility with fabrication simplicity, opening new routes to compact electro-optic platforms for ranging, holography, and beam steering.
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