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Spatial nonlinear effects with higher order modes in LiNbO3 waveguide arrays

机译:LiNbO 3 波导阵列中具有高阶模的空间非线性效应

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We present theoretical and experimental studies on nonlinear beam propagation in lithium niobate waveguide arrays utilizing higher order second harmonic bands. We find that the implementation of the higher order second harmonic bands leads to a number of new effects. The combined interaction of two second harmonic bands with a propagating fundamental beam can lead to a complete inhibition of nonlinear effects or to the formation of discrete spatial solitons, depending only on the wavelength of the fundamental wave. Furthermore we analyze the properties of discrete solitons subjected to linear coupling of the second harmonic. Here we predict and demonstrate experimentally a power dependent phase transition of the soliton topology.
机译:我们提出了利用高阶二次谐波带在铌酸锂波导阵列中非线性光束传播的理论和实验研究。我们发现,高阶二次谐波带的实施会带来许多新的影响。仅取决于基波的波长,两个二次谐波带与正在传播的基本光束的组合相互作用可导致完全抑制非线性效应或形成离散的空间孤子。此外,我们分析了经受二次谐波线性耦合的离散孤子的特性。在这里,我们预测并实验证明了孤子拓扑的功率相关相变。

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