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Tunable continuous wave emission via phase-matched second harmonic generation in a ZnSe microcylindrical resonator

机译:在ZnSe微圆柱谐振器中通过相位匹配的二次谐波产生可调谐的连续波发射

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摘要

Whispering gallery mode microresonators made from crystalline materials are of great interest for studies of low threshold nonlinear phenomena. Compared to amorphous materials, crystalline structures often exhibit desirable properties such as high indices of refraction, high nonlinearities, and large windows of transparency, making them ideal for use in frequency comb generation, microlasing and all-optical processing. In particular, crystalline materials can also possess a non-centrosymmetric structure which gives rise to the second order nonlinearity, necessary for three photon processes such as frequency doubling and parametric down-conversion. Here we report a novel route to fabricating crystalline zinc selenide microcylindrical resonators from our semiconductor fibre platform and demonstrate their use for tunable, low power continuous wave second harmonic generation. Visible red light is observed when pumped with a telecommunications band source by a process that is phase-matched between different higher order radial modes, possible due to the good spatial overlap between the pump and signal in the small volume resonator. By exploiting the geometrical flexibility offered by the fibre platform together with the ultra-wide 500–22000 nm transmission window of the ZnSe material, we expect these resonators to find use in applications ranging from spectroscopy to quantum information systems.
机译:由结晶材料制成的回音壁模式微谐振器对于研究低阈值非线性现象非常感兴趣。与非晶材料相比,晶体结构通常表现出理想的特性,例如高折射率,高非线性和较大的透明窗口,使其非常适合于频率梳的产生,微激光和全光学加工。特别地,晶体材料还可以具有非中心对称的结构,该结构引起二阶非线性,这对于诸如倍频和参数下变频的三个光子过程是必需的。在这里,我们报告了一种从我们的半导体光纤平台制造晶体硒化锌微圆柱谐振器的新颖途径,并展示了它们在可调谐,低功率连续波二次谐波产生中的用途。当通过不同的高阶径向模式之间的相位匹配的过程泵浦电信频带源时,观察到可见的红光,这可能是由于泵和小体积谐振器中信号之间的良好空间重叠所致。通过利用光纤平台提供的几何灵活性以及ZnSe材料的超宽500–22000 nm传输窗口,我们期望这些谐振器在从光谱学到量子信息系统的各种应用中得到应用。

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