首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Effect of frequency detuning on pulse propagation in one-dimensional photonic crystal with a dense resonant medium: application to optical logic
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Effect of frequency detuning on pulse propagation in one-dimensional photonic crystal with a dense resonant medium: application to optical logic

机译:频率失谐对具有密集谐振介质的一维光子晶体中脉冲传播的影响:在光学逻辑中的应用

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We consider propagation of light pulses detuned from the atomic resonance in a dense two-level medium and the photonic structures with it. The large density of the medium is important for decreasing the spatial scale of nonlinear effects such as pulse compression, though it does not provide any fundamentally new phenomena as compared to dilute media. Frequency detuning decreases the effectivity of nonlinear phenomena such as pulse compression and dispersion-spreading compensation as well. We propose simple logic gates based on interaction between two pulses in one-dimensional nonlinear photonic crystal. We found that frequency detuning is necessary to obtain ultrafast AND gates, while OR and NOT gates can be realized in the system without detuning.
机译:我们考虑从原子共振失谐的光脉冲在稠密的两能级介质中的传播以及具有光子结构的光子的传播。介质的大密度对于减小非线性效应(例如脉冲压缩)的空间尺度很重要,尽管与稀释介质相比,它没有提供任何根本上的新现象。频率失谐会降低非线性现象(例如脉冲压缩和色散扩展补偿)的有效性。我们基于一维非线性光子晶体中两个脉冲之间的相互作用,提出了简单的逻辑门。我们发现,频率失谐是获得超快AND门的必要条件,而OR和NOT门可以在系统中实现而不会失谐。

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