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首页> 外文期刊>Scientific reports. >Flip-flop Converter of Dual-bistability Using Cavity and Parametric Amplified Four-Wave Mixing
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Flip-flop Converter of Dual-bistability Using Cavity and Parametric Amplified Four-Wave Mixing

机译:使用腔和参量放大四波混频的双稳态双稳态触发器转换器

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We study the realization of dual-bistability flip-flop converter in cavity and parametrically amplified four-wave mixing (FWM) process at a four-level cavity atomic system. Using the effect of nonreciprocity optical dual-bistability, we can obtain different output multi-mode states of probe transmission signal and FWM signal. We find the channel equalization ratio and optical contrast between multi-mode states is related to the degree of dual-bistability. Besides, the degree of dual-bistability can be controlled by the input parameters (frequency detuning and powers of the dressing beams). More, using electro-optical modulator and acoustic optical modulator to modulate the powers and frequency detuning, respectively, we can realize the fast conversion between different output states. And the switch speed of this flip-flop converter is about 16?ns. These outcomes may provide foundation for the development of all-optical devices and quantum information processing.
机译:我们研究了双腔双稳态触发器在腔中的实现以及在四能级腔原子系统上的参数放大四波混合(FWM)过程。利用不可逆光学双稳态的影响,可以获得探头传输信号和FWM信号的不同输出多模态。我们发现多模态之间的通道均衡比和光学对比度与双稳态的程度有关。此外,双稳态的程度可以通过输入参数(频率失谐和修整光束的功率)来控制。另外,分别使用电光调制器和声光调制器来调制功率和频率失谐,就可以实现不同输出状态之间的快速转换。该触发器转换器的开关速度约为16?ns。这些结果可为全光学设备和量子信息处理的发展提供基础。

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