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Performance Limits of Inhomogeneous Fiber Optic Parametric Amplifiers Operated in Saturated Regime

机译:在饱和状态下工作的非均质光纤参数放大器的性能极限

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摘要

Performance limits of saturated parametric amplifiers with very high nonlinear figure of merit were investigated. While such devices can be constructed using high confinement fiber, they also require localized phase matching control over hundreds of meters of interaction length. The limit on signal-induced pump depletion imposed by stochastic dispersion fluctuations in physical fibers is studied for a case of high-gain parametric amplifiers. We show that nanometer-scale fluctuations in fiber transverse geometry can lead to qualitatively different saturation characteristics in very efficient parametric devices. In contrast to a pump-undepleted parametric amplifier, an inhomogeneous parametric amplifier operated in saturation regime is found to possess truly nonreciprocal transfer characteristic.
机译:研究了具有很高非线性因数的饱和参量放大器的性能极限。尽管可以使用高限制光纤构造此类设备,但它们还需要对数百米的相互作用长度进行局部相位匹配控制。对于高增益参数放大器,研究了物理光纤中随机色散波动对信号引起的泵浦损耗的限制。我们表明,在非常有效的参数设备中,纤维横向几何形状的纳米级波动会导致定性上不同的饱和特性。与泵浦未完成的参量放大器相反,在饱和状态下工作的非均质参量放大器具有真正的不可逆传递特性。

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