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Tapered optical fibers as tools for probing magneto-optical trap characteristics

机译:锥形光纤作为探测磁光陷阱特性的工具

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摘要

We present a novel technique for measuring the characteristics of a magneto-optical trap (MOT) for cold atoms by monitoring the spontaneous emission from trapped atoms coupled into the guided mode of a tapered optical nanofiber. We show that the nanofiber is highly sensitive to very small numbers of atoms close to its surface. The size and shape of the MOT, determined by translating the cold atom cloud across the tapered fiber, is in excellent agreement with measurements obtained using the conventional method of fluorescence imaging using a charge coupled device camera. The coupling of atomic fluorescence into the tapered fiber also allows us to monitor the loading and lifetime of the trap. The results are compared to those achieved by focusing the MOT fluorescence onto a photodiode and it was seen that the tapered fiber gives slightly longer loading and lifetime measurements due to the sensitivity of the fiber, even when very few atoms are present.
机译:我们提出了一种新技术,用于通过监测耦合到锥形光学纳米纤维的引导模式中的被捕获原子的自发发射,来测量冷原子的磁光陷阱(MOT)的特性。我们表明,纳米纤维对靠近其表面的少量原子高度敏感。通过在锥形光纤上平移冷原子云而确定的MOT的尺寸和形状,与使用传统的使用电荷耦合器件照相机的荧光成像方法获得的测量结果非常吻合。原子荧光耦合到锥形光纤中还使我们能够监视陷阱的负载和寿命。将结果与通过将MOT荧光聚焦到光电二极管上所获得的结果进行比较,可以看出,即使光纤中存在很少的原子,由于光纤的敏感性,锥形光纤也可以提供更长的负载和寿命测量。

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