激子
极化子
电场
纳秒
光电子学
光子学
准粒子
偶极子
化学
光开关
光子
领域(数学)
凝聚态物理
物理
光学
超导电性
激光器
量子力学
数学
有机化学
纯数学
作者
Jianbo De,Xuekai Ma,Fan Yin,Jiahuan Ren,Jiannian Yao,Stefan Schumacher,Qing Liao,Hongbing Fu,G. Malpuech,D. D. Solnyshkov
摘要
Integrated electro-optical switches are essential as one of the fundamental elements in the development of modern optoelectronics. As an architecture for photonic systems exciton polaritons, hybrid bosonic quasiparticles that possess unique properties derived from both excitons and photons, have shown much promise. For this system, we demonstrate a significant improvement of emitted intensity and condensation threshold by applying an electric field to a microcavity filled with an organic microbelt. Our theoretical investigations indicate that the electric field makes the excitons dipolar and induces an enhancement of the exciton-polariton interaction and of the polariton lifetime. Based on these electric field-induced changes, a sub-nanosecond electrical field-enhanced polariton condensate switch is realized at room temperature, providing the basis for developing an on-chip integrated photonic device in the strong light-matter coupling regime.
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