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超高精细度、低模式体积法布里-珀罗微腔。

Ultrahigh-finesse, low-mode-volume Fabry-Perot microcavity.

机构信息

National Institute of Standards and Technology and University of Maryland, Gaithersburg, Maryland 20899, USA.

出版信息

Opt Lett. 2010 Jul 1;35(13):2293-5. doi: 10.1364/OL.35.002293.

Abstract

Ultralow-loss concave micromirrors with radius of curvature below 60 microm were fabricated by laser ablation and reflective coatings. A 10-microm-long microcavity with a mode volume of 40 microm(3) was set up with two such mirrors, and the cavity linewidth was measured both spectrally and temporally. The smallest linewidth obtained was 96 MHz, corresponding to a quality factor of 3.3x10(6) and a finesse in excess of 1.5x10(5). With these parameters, we estimate that a variety of solid-state quantum emitters coupled to the cavity may enter the strong coupling regime.

摘要

通过激光烧蚀和反射涂层,制造出曲率半径低于 60 微米的超低损耗凹面微镜。使用两个这样的微镜建立了一个长 10 微米、模式体积为 40 微米的微腔,并通过光谱和时间测量了腔的线宽。获得的最小线宽为 96 MHz,对应品质因数为 3.3x10(6),精细度超过 1.5x10(5)。根据这些参数,我们估计与腔耦合的各种固态量子发射器可能进入强耦合状态。

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