论文标题

完全非线性三波混合的绝热几何阶段

Adiabatic geometric phase in fully nonlinear three-wave mixing

论文作者

Li, Yongyao, Yesharim, Ofir, Hurvitz, Inbar, Karnieli, Aviv, Fu, Shenhe, Porat, Gil, Arie, Ady

论文摘要

在非线性的三波混合过程中,如果晶体的非线性系数沿非线性晶体进行适当的方式调节,则相互作用波可以积累绝热几何相(AGP)。到目前为止,仅研究了泵波比其他两个波的强大的情况,因此可以认为这一概念是恒定的。在这里,我们将此分析扩展到完全非线性过程,其中所有三个波都可以耗尽,我们表明AGP的符号和幅度可以通过非线性调制模式的周期,相位和占空比控制。在这种完全非线性的相互作用中,系统的所有状态都可以映射到封闭的表面上。具体而言,我们研究了一个过程,该过程在该过程中遵循表面上的圆形旋转。我们的分析表明,AGP等于沿圆形轨迹累积的总相之间的差异以及沿其垂直投影的差异,这对于不耗尽的(线性)和耗尽(非线性)情况是通用的。此外,分析表明,在总和产生和差异频率产生过程中的AGP具有相反的手性。最后,我们在完全非线性的情况下利用AGP将梁分为远场的不同衍射顺序。

In a nonlinear three-wave mixing process, the interacting waves can accumulate an adiabatic geometric phase (AGP) if the nonlinear coefficient of the crystal is modulated in a proper manner along the nonlinear crystal. This concept was studied so far only for the case in which the pump wave is much stronger than the two other waves, hence can be assumed to be constant. Here we extend this analysis for the fully nonlinear process, in which all three waves can be depleted and we show that the sign and magnitude of the AGP can be controlled by the period, phase and duty cycle of the nonlinear modulation pattern. In this fully nonlinear interaction, all the states of the system can be mapped onto a closed surface. Specifically, we study a process in which the eigenstate of the system follows a circular rotation on the surface. Our analysis reveals that the AGP equals to the difference between the total phase accumulated along the circular trajectory and that along its vertical projection, which is universal for the undepleted (linear) and depleted (nonlinear) cases. Moreover, the analysis reveals that the AGPs in the processes of sum-frequency generation and difference-frequency generation have opposite chirality. Finally, we utilize the AGP in the fully nonlinear case for splitting the beam into different diffraction orders in the far field.

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