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Second-harmonic generation using ... formula ...-quasi-phasematching in a GaAs whispering-gallery-mode microcavity

机译:在GaAs耳语画廊模式微腔中使用...准相位匹配产生二次谐波

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摘要

The crystal symmetry in materials such as GaAs can enable quasi-phasematching for efficient optical frequency conversion without poling, twinning or other engineered domain inversions. symmetry means that a 90° rotation is equivalent to a crystallographic inversion. Therefore, when light circulates about the axis, as in GaAs whispering-gallery-mode microdisks, it encounters effective domain inversions that can produce quasi-phasematching. Microdisk resonators also offer resonant field enhancement, resulting in highly efficient frequency conversion in micrometre-scale volumes. These devices can be integrated in photonic circuits as compact frequency convertors, sources of radiation or entangled photons. Here we present the first experimental observation of second-harmonic generation in a whispering-gallery-mode microcavity utilizing -quasi-phasematching. We use a tapered fibre to couple into the 5-μm diameter microdisk resonator, resulting in a normalized conversion efficiency η≈5 × 10−5 mW−1. Simulations indicate that when accounting for fibre-cavity scattering, the normalized conversion efficiency is η≈3 × 10−3 mW−1.
机译:GaAs等材料中的晶体对称性可实现准相位匹配,从而实现有效的光频率转换,而无需极化,孪生或其他工程畴反转。对称性是指90°旋转等效于晶体学反转。因此,当光绕轴循环时(例如在GaAs耳语画廊模式微盘中),它会遇到有效的畴反转,从而产生准相位匹配。微型磁盘谐振器还可以增强谐振场,从而实现微米级体积的高效频率转换。这些设备可以作为紧凑型变频器,辐射源或纠缠的光子集成在光子电路中。在这里,我们介绍了使用准相位匹配在耳语画廊模式微腔中产生第二谐波的第一实验观察。我们使用锥形光纤耦合到直径为5μm的微盘谐振器中,从而导致归一化转换效率η≈5×10 -5 mW -1 。仿真表明,考虑到光纤腔的散射,归一化转换效率为η≈3×10 -3 mW -1

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