We study the parametric amplification of electromagnetically induced transparency-assisted Rydberg six-and eight-wave mixing signals through a cascaded nonlinear optical process in a hot rubidium atomic ensemble both ...We study the parametric amplification of electromagnetically induced transparency-assisted Rydberg six-and eight-wave mixing signals through a cascaded nonlinear optical process in a hot rubidium atomic ensemble both theoretically and experimentally. The shift of the resonant frequency(induced by the Rydberg–Rydberg interaction) of parametrically amplified six-wave mixing signal is observed. Moreover, the interplays between the dressing effects and Rydberg–Rydberg interactions in parametrically amplified multiwave mixing signals are investigated. The linear amplification of Rydberg multiwave mixing processes with multichannel nature acts against the suppression caused by Rydberg–Rydberg interaction and dressing effect.展开更多
利用时域有限差分法对由闭合方环(SCL)和开口谐振环(SRR)组合构成的平面太赫兹谐振器实现的类电磁诱导透明(EIT)效应及其折射率传感器进行了仿真分析。结果表明,该类EIT谐振峰对周围环境介质折射率变化具有很高的灵敏度,且其FOM(Figure ...利用时域有限差分法对由闭合方环(SCL)和开口谐振环(SRR)组合构成的平面太赫兹谐振器实现的类电磁诱导透明(EIT)效应及其折射率传感器进行了仿真分析。结果表明,该类EIT谐振峰对周围环境介质折射率变化具有很高的灵敏度,且其FOM(Figure of merit)值达到4.06,优于独立SCL或SRR结构传感器的0.09和2.48。利用激光诱导技术与化学镀铜技术在聚酰亚胺薄膜上加工了谐振器样品,并对其进行了透射性能测试,测试结果与仿真计算基本一致。展开更多
基金National Key R&D Program of China(2017YFA0303700)National Natural Science Foundation of China(NSFC)(11474228,11604256,61605154)+2 种基金Key Scientific and Technological Innovation Team of Shaanxi Province(2014KCT-10)Natural Science Foundation of Shaanxi Province(2017JQ6039)China Postdoctoral Science Foundation(2016M600776)
文摘We study the parametric amplification of electromagnetically induced transparency-assisted Rydberg six-and eight-wave mixing signals through a cascaded nonlinear optical process in a hot rubidium atomic ensemble both theoretically and experimentally. The shift of the resonant frequency(induced by the Rydberg–Rydberg interaction) of parametrically amplified six-wave mixing signal is observed. Moreover, the interplays between the dressing effects and Rydberg–Rydberg interactions in parametrically amplified multiwave mixing signals are investigated. The linear amplification of Rydberg multiwave mixing processes with multichannel nature acts against the suppression caused by Rydberg–Rydberg interaction and dressing effect.
文摘利用时域有限差分法对由闭合方环(SCL)和开口谐振环(SRR)组合构成的平面太赫兹谐振器实现的类电磁诱导透明(EIT)效应及其折射率传感器进行了仿真分析。结果表明,该类EIT谐振峰对周围环境介质折射率变化具有很高的灵敏度,且其FOM(Figure of merit)值达到4.06,优于独立SCL或SRR结构传感器的0.09和2.48。利用激光诱导技术与化学镀铜技术在聚酰亚胺薄膜上加工了谐振器样品,并对其进行了透射性能测试,测试结果与仿真计算基本一致。