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Optical parametric amplification beyond the slowly varying amplitude approximation

机译:光学参数放大超过幅度逐渐变化的近似值

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The coupled-wave equations describing optical parametric amplification (OPA) are usually solved in the slowly varying amplitude (SVA) approximation regime, in which the second-order derivatives of the signal and idler amplitudes are ignored and in fact the electromagnetic effects due to exit face of the medium is not involved. Here, an analytical plane-wave solution of these coupled-wave equations in a non-absorbing medium is presented. The solutions are derived beyond the SVA approximation up to order of κ/k (coupling constant over the wave number). The intensity distributions of the signal and the idler waves show a periodic behavior about their corresponding distributions of SVA-adapted solution. This behavior can be explained by the interference of the forward propagating signal (idler) wave and the corresponding backward one resulted from the reflection by the end face of the medium. Furthermore, this interference pattern in the medium can in turn serve as a periodic source for the next generations of the signal and idler waves. Therefore, the superposition of the waves, generated from different points of this periodic source, at the exit face of the medium shows an oscillatory behavior of the transmitted signal (idler) wave in terms of normalized coupling constant, κL. This study also shows that this effect is more considerable for high intensity pump beam, high relative refractive index and short length of the nonlinear medium.
机译:描述光学参量放大(OPA)的耦合波方程通常在缓慢变化的振幅(SVA)近似方案中求解,在该方案中,信号和惰轮振幅的二阶导数被忽略,而实际上由于出口引起的电磁效应面对媒体不参与。在此,介绍了在非吸收性介质中这些耦合波方程的解析平面波解决方案。这些解超出了SVA逼近范围,直至κ/ k(波数上的耦合常数)。信号和惰轮的强度分布显示出与它们对应的SVA适应解的分布有关的周期性行为。这种行为可以通过介质的端面反射导致的正向传播信号(惰轮)波和相应的向后反向波的干扰来解释。此外,介质中的这种干扰模式又可以用作下一代信号波和空转波的周期性信号源。因此,从该周期性源的不同点生成的波在介质的出射面处的叠加显示出归一化耦合常数κL表示的传输信号(惰轮)的振荡行为。这项研究还表明,对于高强度泵浦光束,较高的相对折射率和较短的非线性介质长度,这种影响更为明显。

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