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Implementation of nearly single-mode second harmonic generation by using a femtosecond laser written waveguiding structure in KTiOPO_4 nonlinear crystal

机译:飞秒激光写入波导结构在KTiOPO_4非线性晶体中实现近单模二次谐波的产生

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We propose a hybrid photonic structure to realize guided-wave second harmonic generation (SHG) from near-infrared (NIR at 1064 nm) to visible (green light at 532 nm) wavelength with nearly single-mode output. The periodically arrayed tracks have been produced in KTiOPO4 nonlinear crystal by femtosecond laser writing, which enable efficient light field confinement with cladding-like refractive index distributions. Particularly, the track-cladding surrounded central region is free of any tracks, which serves as waveguiding cores. With designed core diameters, the structures could enable single-mode propagation at selected wavelength regime on purpose. In this work, the hybrid structure contains a larger-input core section and a connected smaller-output core section, which in principle supports nearly single mode for either fundamental pump beam or second harmonic beam in the input and output channel, respectively. Based on this hybrid structure we implement nearly single-mode SHG at 532 nm, and comparable normalized conversion efficiency (1.1%/W/cm) in the continuous-wave (CW) regime is obtained with respect to that (1.2%/W/cm) of multimode SHG from a single large-core channel structure. This work paves the way to realize mode profile controlling for selected wavelength by using laser-written arrayed tracks.
机译:我们提出一种混合光子结构,以近乎单模输出的方式实现从近红外(NIR在1064 nm)到可见光(532 nm的绿光)的导波二次谐波(SHG)。飞秒激光写入已在KTiOPO4非线性晶体中产生了周期性排列的光道,从而可以实现有效的光场限制,具有包层状的折射率分布。特别地,环绕轨道的覆盖层的中央区域没有用作波导芯的任何轨道。通过设计的纤芯直径,这些结构可以有目的地在选定的波长范围内实现单模传播。在这项工作中,混合结构包含一个较大输入核心部分和一个连接的较小输出核心部分,原则上,它们分别对输入和输出通道中的基本泵浦光束或二次谐波光束支持几乎单一的模式。基于这种混合结构,我们在532 nm处实现了近乎单模的SHG,并且在连续波(CW)情况下相对于(1.2%/ W / cm),可以获得相当的归一化转换效率(1.1%/ W / cm)厘米)的多模SHG来自单个大核通道结构。这项工作为通过使用激光写入的阵列轨道实现对选定波长的模式轮廓控制铺平了道路。

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