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In situ characterization of an optical cavity using atomic light shift

机译:利用原子光位移原位表征光学腔

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摘要

We report the precise characterization of the optical potential obtained by injecting a distributed-feedback erbium-doped fiber laser at 1560nm to the transverse modes of a folded optical cavity. The optical potential was mapped in situ using cold rubidium atoms, whose potential energy was spectrally resolved thanks to the strong differential light shift induced by the 1560 nm laser on the two levels of the probe transition. The optical potential obtained in the cavity is suitable for trapping rubidium atoms and eventually to achieve all-optical Bose-Einstein condensation directly in the resonator.
机译:我们报告了通过将1560nm的分布反馈掺-光纤激光器注入折叠光学腔的横向模中获得的光势的精确表征。使用冷的atoms原子原位绘制了光势,由于1560 nm激光在探针跃迁的两个水平上产生了强烈的差分光偏移,因此使用了cold原子就可以解析其势能。在腔中获得的光势适合于捕获rub原子,并最终直接在谐振器中实现全光学的玻色-爱因斯坦凝聚。

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