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Tunable resonant optical microcavities by self-assembled templating

机译:通过自组装模板可调谐谐振光学微腔

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Micrometer-scale optical cavities are produced by a combination of template sphere self-assembly and electro-chemical growth. Transmission measurements of the tunable microcavities show sharp resonant modes with Q factors of >300 and 25-fold local enhancement of light intensity. The presence of transverse optical modes confirms the lateral confinement of photons. Calculations show that submicrometer mode volumes are feasible. The small mode volumes of these microcavities promise to lead to a wide range of applications in microlasers, atom optics, quantum information, biophotonics, and single-molecule detection.
机译:微米级的光学腔是通过模板球的自组装和电化学生长相结合而产生的。可调微腔的透射率测量显示出Q因子> 300且光强度局部增强25倍的清晰共振模式。横向光学模式的存在证实了光子的横向限制。计算表明,亚微米模式体积是可行的。这些微腔的小模体积有望导致在微激光,原子光学,量子信息,生物光子学和单分子检测中的广泛应用。

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