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Effect of particular nonlinear dispersion in photorefractive four-wave mixing on slow and fast light

机译:光折射四波混频中特定非线性色散对慢速和快光的影响

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摘要

The phase shift occurred by optical waves in nonlinear interaction may be considered as phase shift resulted from a nonlinear refractive index. Consequently, a spectrum of the nonlinear phase shift in non-degenerate in frequency interactions represents nonlinear dispersion. Thus the nonlinear interaction with such dispersion may be used to achieve slow and fast light. The phase-conjugate reflectivity in photorefractive four-wave mixing may reveal spectrum with two maxima, which are located symmetrically with respect to zero frequency detuning. A complicated nonlinear dispersion corresponds to such reflectivity spectrum. Qualitative analysis of the nonlinear dispersion suggests unusual behavior when the nonlinear effect, i.e., delay of the light pulse, may decrease with increase of nonlinear coupling strength. The numerical calculations confirm such a nontrivial behavior. The experimental conditions are found, for which the delay of the phase-conjugate pulse decreases when the coupling strength increases. The conclusions of the theoretical analysis are confirmed experimentally for photorefractive four-wave mixing in barium titanate.
机译:由光波在非线性相互作用中发生的相移可被认为是由非线性折射率引起的相移。因此,在频率相互作用中非退化的非线性相移的频谱表示非线性色散。因此,具有这种色散的非线性相互作用可用于获得缓慢和快速的光。光折射四波混频中的相位共轭反射率可以显示出两个最大值的频谱,这两个频谱相对于零频率失谐对称。复杂的非线性色散对应于这样的反射率光谱。对非线性色散的定性分析表明,当非线性效应(即光脉冲的延迟)随非线性耦合强度的增加而减小时,非线性行为就表现出异常的行为。数值计算证实了这种非平凡的行为。发现了实验条件,当耦合强度增加时,相位共轭脉冲的延迟减小。理论分析的结论在钛酸钡中的光折变四波混合实验中得到了证实。

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