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Anti-Stokes and cascaded Stokes Raman microlaser from an organically modified optical resonator

机译:从有机改进的光学谐振器中反斯托克斯和级联斯托克斯拉曼微升降机

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Due to their high circulating intensities, ultra-high quality factor dielectric whispering-gallery mode resonators have enabled the development of low threshold Raman microlasers. Subsequently, other Raman-related phenomena, such as cascaded stimulated Raman scattering (CSRS) and stimulated anti-Stokes Raman scattering (SARS), were observed. While low threshold frequency conversion and generation have clear applications, CSRS and SARS have been limited by the low Raman gain. In this work, the surface of a silica resonator is modified with an organic monolayer, increasing the Raman gain. Up to four orders of CSRS is observed with sub-mW input power, and the SARS efficiency is improved by three orders of magnitude compared to previous studies with hybrid resonators.
机译:由于它们的高循环强度,超高量的因子电介质潜在潜水廊模式谐振器使得低阈值拉曼微加工器的开发。 随后,观察到其他与拉曼相关的现象,例如级联刺激的拉曼散射(CSR)和刺激的抗Stokes拉曼散射(SARS)。 虽然低阈值频率转换和生成具有清晰的应用,但CSR和SARS受到低拉曼增益的限制。 在这项工作中,用有机单层改性二氧化硅谐振器的表面,增加拉曼增益。 通过子MW输入功率观察到最多四个顺序的CSR,与Hybrid谐振器的先前研究相比,SARS效率提高了三个数量级。

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