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Nonlinear wavefront shaping with optically induced three-dimensional nonlinear photonic crystals

机译:光诱导三维非线性光子晶体的非线性波阵面整形

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摘要

Generation of coherent light with desirable amplitude and phase profiles throughout the optical spectrum is a key issue in optical technologies. Nonlinear wavefront shaping offers an exceptional way to achieve this goal by converting an incident light beam into the beam (or beams) of different frequency with spatially modulated amplitude and phase. The realization of such frequency conversion and shaping processes critically depends on the matching of phase velocities of interacting waves, for which nonlinear photonic crystals (NPCs) with spatially modulated quadratic nonlinearity have shown great potential. Here, we present the first experimental demonstration of nonlinear wavefront shaping with three-dimensional (3D) NPCs formed by ultrafast-light-induced ferroelectric domain inversion approach. Compared with those previously used low-dimensional structures, 3D NPCs provide all spatial degrees of freedom for the compensation of phase mismatch in nonlinear interactions and thereby constitute an unprecedented system for the generation and control of coherent light at new frequencies.
机译:在整个光谱中产生具有期望的幅度和相位分布的相干光是光学技术中的关键问题。非线性波前整形通过将入射光束转换为具有空间调制幅度和相位的不同频率的光束,提供了一种实现此目标的特殊方法。这种频率转换和整形过程的实现关键取决于相互作用波的相速度的匹配,为此,具有空间调制二次非线性的非线性光子晶体(NPC)具有很大的潜力。在这里,我们展示了通过超快光感应铁电畴反演方法形成的具有三维(3D)NPC的非线性波阵面整形的第一个实验演示。与以前使用的低维结构相比,3D NPC提供了所有空间自由度来补偿非线性相互作用中的相位失配,从而构成了前所未有的系统,用于在新频率下产生和控制相干光。

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