材料科学
光电子学
纳米光子学
光子晶体
调制(音乐)
兰姆波
声波
微波食品加热
谐振器
传感器
频率调制
光子学
叉指换能器
光学
宽禁带半导体
声表面波
联轴节(管道)
激发
表面波
氮化物
压电
光调制器
波导管
相位调制
栅栏
铌酸锂
光子
极化子
纳米线
耦合模理论
调幅
声表面波传感器
作者
Semere A. Tadesse,Huan Li,Qiyu Liu,Mo Li
摘要
Integrating nanoscale electromechanical transducers and nanophotonic devices potentially can enable acousto-optic devices to reach unprecedented high frequencies and modulation efficiency. Here, we demonstrate acousto-optic modulation of a photonic crystal nanocavity using Lamb waves with frequency up to 19 GHz, reaching the microwave K band. The devices are fabricated in suspended aluminum nitride membrane. Excitation of acoustic waves is achieved with interdigital transducers with period as small as 300 nm. Confining both acoustic wave and optical wave within the thickness of the membrane leads to improved acousto-optic modulation efficiency in these devices than that obtained in previous surface acoustic wave devices. Our system demonstrates a scalable optomechanical platform where strong acousto-optic coupling between cavity-confined photons and high frequency traveling phonons can be explored.
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