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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Theory and experiments for multiple four-wave-mixing processes with multifrequency pumps in optical fibers
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Theory and experiments for multiple four-wave-mixing processes with multifrequency pumps in optical fibers

机译:光纤中多频泵浦的多个四波混频过程的理论和实验

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Multiple four-wave-mixing (FWM) processes with multifrequency pumps in optical fibers are investigated theoretically and experimentally. The propagation equations describing the FWM nonlinear interactions between pump waves and "first-order" sideband waves are derived. Based on our theoretical model, the rigorous nonlinear equations governing arbitrary pumps can be developed when the pump waves have equal frequency spacing. The proposed theory can generalize the traditional theory of FWM processes. The rigorous nonlinear equations governing three pumps and three cases of simplified equations governing three, four, and five pumps are achieved. Numerical simulations for three, four, and five pumps are experimentally tested by using a piece of highly nonlinear photonic-crystal fiber, and the experimental observations confirmed our theoretical predictions. The stabilization of waves by multiple FWM processes is proved theoretically and confirmed experimentally.
机译:从理论上和实验上研究了多频泵浦中的多个四波混频(FWM)过程。推导了描述泵浦波和“一阶”边带波之间的FWM非线性相互作用的传播方程。根据我们的理论模型,当泵​​浦波具有相等的频率间隔时,可以建立严格的非线性方程来控制任意泵浦。所提出的理论可以推广传统的FWM过程理论。获得了控制三个泵的严格非线性方程式和控制三个,四个和五个泵的三种简化方程式。使用一块高度非线性的光子晶体光纤对三个,四个和五个泵的数值模拟进行了实验测试,实验结果证实了我们的理论预测。理论上证明了多种FWM过程对波的稳定作用,并通过实验进行了证实。

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