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Resonant electric dipole-dipole interactions between cold Rydberg atoms in a magnetic field

机译:磁场中冷Rydberg原子之间的共振电偶极子-偶极子相互作用

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摘要

Laser-cooled Rb-85 atoms were optically excited to 46d(5/2) Rydberg states. A microwave pulse transferred a fraction of the atoms to the 47p(3/2) Rydberg state. The resonant electric dipole-dipole interactions between atoms in these two states were probed using the linewidth of the two-photon microwave transition 46d(5/2)-47d(5/2). The presence of a weak magnetic field approximate to 0.5 G reduced the observed line broadening, indicating that the interaction is suppressed by the field. The field removes some of the energy degeneracies responsible for the resonant interaction, and this is the basis for a quantitative model of the resulting suppression. A technique for the calibration of magnetic field strengths using the 34s(1/2)-34p(1/2) one-photon transition is also presented.
机译:激光冷却的Rb-85原子被光学激发到46d(5/2)Rydberg态。微波脉冲将一部分原子转移到47p(3/2)Rydberg态。使用双光子微波跃迁46d(5/2)-47d(5/2)的线宽探测了这两种状态下原子之间的共振电偶极-偶极相互作用。大约0.5 G的弱磁场的存在减少了观察到的谱线加宽,表明相互作用被磁场抑制了。该场消除了引起共振相互作用的一些能量简并性,这是所得抑制的定量模型的基础。还提出了一种使用34s(1/2)-34p(1/2)单光子跃迁校准磁场强度的技术。

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