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首页> 外文期刊>Nature Communications >Second-harmonic generation using (4)over-bar-quasi-phasematching in a GaAs whispering-gallery-mode microcavity
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Second-harmonic generation using (4)over-bar-quasi-phasematching in a GaAs whispering-gallery-mode microcavity

机译:在GaAs耳语画廊模式微腔中使用(4)跨棒准相位匹配产生二次谐波

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The (4) over bar crystal symmetry in materials such as GaAs can enable quasi-phasematching for efficient optical frequency conversion without poling, twinning or other engineered domain inversions. (4) over bar symmetry means that a 90 degrees rotation is equivalent to a crystallographic inversion. Therefore, when light circulates about the (4) over bar 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 (4) over bar -quasi-phasematching. We use a tapered fibre to couple into the 5-mu m diameter microdisk resonator, resulting in a normalized conversion efficiency eta approximate to 5 x 10(-5) mW(-1). Simulations indicate that when accounting for fibre-cavity scattering, the normalized conversion efficiency is eta approximate to 3 x 10(-3) mW(-1).
机译:GaAs等材料中的(4)超晶格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。 (4)过棒对称性表示90度旋转等效于晶体学反转。因此,当光围绕(4)在条形轴上循环时,如在GaAs耳语画廊模式微盘中一样,它遇到有效的畴反转,该畴反转可以产生准相位匹配。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。这些设备可以集成到光子电路中,作为紧凑型变频器,辐射源或纠缠的光子。在这里,我们介绍了在耳语画廊模式微腔中利用bar准相位匹配上的(4)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5微米的微盘谐振器中,从而导致归一化转换效率eta大约为5 x 10(-5)mW(-1)。仿真表明,考虑到光纤腔散射,归一化转换效率大约为3 x 10(-3)mW(-1)。

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