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Detection of excited level population transfer in an MOT through the measurement of trapped atom number

机译:通过测量俘获原子数检测MOT中激发能级的迁移

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摘要

We study the rubidium magneto-optical trap (MOT) population changes induced by a laser beam interacting with the trapped atoms and resonant with different transitions from both the ground and the excited trap levels. Laser excitation outside the cooling scheme induces losses in the MOT population, while the laser increases the trap population when tuned to transitions linked to the trapping cycle. The experiment is performed with a small number of trapped atoms (100 to 10 000). A discussion of our ability in manipulating the atomic population of different hyperfine states is reported.
机译:我们研究了由激光束与被俘获的原子相互作用引起的with磁光阱(MOT)的种群变化,并且该共振发生了从地面和激发阱能级的不同跃迁。冷却方案之外的激光激发会引起MOT种群的损失,而当激光器调谐到与捕获周期相关的跃迁时,激光会增加阱的种群。实验是用少量被捕获的原子(100到10000)进行的。报告了我们操纵不同超精细状态原子团簇的能力的讨论。

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