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A small mode volume tunable microcavity: Development and characterization

机译:小模量可调微腔:开发与表征

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We report the realization of a spatially and spectrally tunable air-gap Fabry-Pérot type microcavity of high finesse and cubic-wavelength-scale mode volume. These properties are attractive in the fields of opto-mechanics, quantum sensing, and foremost cavity quantum electrodynamics. The major design feature is a miniaturized concave mirror with atomically smooth surface and radius of curvature as low as 10 μm produced by CO2 laser ablation of fused silica. We demonstrate excellent mode-matching of a focussed laser beam to the microcavity mode and confirm from the frequencies of the resonator modes that the effective optical radius matches the physical radius. With these small radii, we demonstrate wavelength-size beam waists. We also show that the microcavity is sufficiently rigid for practical applications: in a cryostat at 4 K, the root-mean-square microcavity length fluctuations are below 5 pm.
机译:我们报告了高精细度和立方波长尺度模式体积的空间和光谱可调的气隙法布里-珀罗型微腔的实现。这些性质在光力学,量子感测和最重要的腔量子电动力学领域具有吸引力。主要设计特征是通过对熔融石英进行CO 2 激光烧蚀产生的原子表面光滑且曲率半径低至10μm的微型凹面镜。我们展示了聚焦激光束与微腔模式的出色模式匹配,并从谐振器模式的频率确认有效光半径与物理半径匹配。利用这些小半径,我们演示了波长大小的束腰。我们还表明,微腔对于实际应用具有足够的刚性:在4 K的低温恒温器中,微腔长度的均方根波动低于5 pm。

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