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四面体激光束几何结构中的Λ增强灰糖蜜

Λ-enhanced gray molasses in a tetrahedral laser beam geometry.

作者信息

Barker D S, Norrgard E B, Klimov N N, Fedchak J A, Scherschligt J, Eckel S

出版信息

Opt Express. 2022 Mar 14;30(6):9959-9970. doi: 10.1364/OE.444711.

Abstract

We report the observation of sub-Doppler cooling of lithium using an irregular-tetrahedral laser beam arrangement, which is produced by a nanofabricated diffraction grating. We are able to capture 11(2)% of the lithium atoms from a grating magneto-optical trap into Λ-enhanced D gray molasses. The molasses cools the captured atoms to a radial temperature of 60(9) μK and an axial temperature of 23(3) μK. In contrast to results from conventional counterpropagating beam configurations, we do not observe cooling when our optical fields are detuned from Raman resonance. An optical Bloch equation simulation of the cooling dynamics agrees with our data. Our results show that grating magneto-optical traps can serve as a robust source of cold atoms for tweezer-array and atom-chip experiments, even when the atomic species is not amenable to sub-Doppler cooling in bright optical molasses.

摘要

我们报告了使用由纳米制造衍射光栅产生的不规则四面体激光束排列对锂进行亚多普勒冷却的观测结果。我们能够将来自光栅磁光阱的11(2)%的锂原子捕获到Λ增强D型灰色 molasses 中。molasses 将捕获的原子冷却到径向温度为60(9) μK,轴向温度为23(3) μK。与传统反向传播光束配置的结果相反,当我们的光场偏离拉曼共振时,我们没有观察到冷却现象。冷却动力学的光学布洛赫方程模拟与我们的数据一致。我们的结果表明,即使原子种类不适合在明亮光学molasses中进行亚多普勒冷却,光栅磁光阱也可以作为用于镊子阵列和原子芯片实验的强大冷原子源。

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本文引用的文献

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Design and fabrication of diffractive atom chips for laser cooling and trapping.
Appl Phys B. 2016;122(6):172. doi: 10.1007/s00340-016-6415-y. Epub 2016 Jun 1.
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Magnetic Trapping of an Ultracold Gas of Polar Molecules.超冷极性分子气体的磁阱捕获。
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