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Atom motion in Laguerre-Gaussian doughnut beams

机译:Laguerre-Gaussian甜甜圈光束中的原子运动

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Summary form only given. Preparation of slow atomic beams has applications in experiments such as lithography, atom interferometry and in general for transporting atoms, for example from one vacuum chamber to another. Optical methods together with hollow fibers have been successfully employed to transport atoms, and all-optical methods using far off-resonant dipole forces have recently attracted much interest. Such all-optical methods have advantages in that far off-resonant dipole traps have potentially very low scattering rates, especially blue detuned hollow beam traps where atoms are restricted to low intensity regions where perturbations due to the light field are minimum. Optical atom guides also have practical advantages in that they can be switched, and can be easily introduced into high vacuum apparatus. Blue detuned hollow laser beams generated from a hollow optical fiber have been used to guide atoms (Xu et al, 1999; Babiker et al, 1994), and holographically generated doughnut beams have been used to guide and focus a cold beam of metastable neon atoms. In our experiments, we investigate the motion of cold rubidium atoms in far-detuned and near-resonant doughnut beams.
机译:仅提供摘要表格。慢速原子束的制备已经在诸如光刻,原子干涉测量法的实验中应用,并且通常用于例如从一个真空室到另一个真空室的原子传输。光学方法和中空纤维一起已成功地用于传输原子,最近使用非共振偶极力的全光学方法引起了人们的极大兴趣。这样的全光学方法的优点在于,非共振的偶极子阱可能具有非常低的散射率,尤其是蓝色失谐的中空束阱,其中原子被限制在由于光场引起的扰动最小的低强度区域。光学原子波导还具有实际优势,因为它们可以切换,并且可以轻松地引入高真空设备中。由中空光纤产生的蓝色失谐中空激光束已被用来引导原子(Xu等,1999; Babiker等人,1994),并且全息产生的甜甜圈束已被用于引导和聚焦亚稳氖原子的冷束。 。在我们的实验中,我们研究了冷rub原子在失谐和近共振的甜甜圈束中的运动。

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