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Photoassociation adiabatic passage of ultracold Rb atoms to form ultracold Rb-2 molecules

机译:超冷Rb原子的光缔合绝热通道形成超冷Rb-2分子

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We theoretically explore photoassociation by adiabatic passage of two colliding cold Rb-85 atoms in an atomic trap to form an ultracold Rb-2 molecule. We consider the incoherent thermal nature of the scattering process in a trap and show that coherent manipulations of the atomic ensemble, such as adiabatic passage, are feasible if performed within the coherence time window dictated by the temperature, which is relatively long for cold atoms. We show that a sequence of similar to 2x10(7) pulses of moderate intensities, each lasting similar to 750 ns, can photoassociate a large fraction of the atomic ensemble at temperature of 100 mu K and density of 10(11) atoms/cm(3). Use of multiple pulse sequences makes it possible to populate the ground vibrational state. Employing spontaneous decay from a selected excited state, one can accumulate the molecules in a narrow distribution of vibrational states in the ground electronic potential. Alternatively, by removing the created molecules from the beam path between pulse sets, one can create a low-density ensemble of molecules in their ground rovibrational state.
机译:我们从理论上探索了两个碰撞的冷Rb-85原子在原子阱中的绝热通过以形成超冷Rb-2分子的光缔合。我们考虑了陷阱中散射过程的非相干热性质,并表明,如果在由温度决定的相干时间窗口内执行原子团的相干操作(如绝热通道)是可行的,这对于冷原子来说是相对较长的。我们显示了一个类似于2x10(7)的中等强度脉冲序列,每个脉冲持续类似于750 ns,它们可以在100μK的温度和10(11)原子/ cm(的密度)下光关联很大一部分原子团。 3)。使用多个脉冲序列使得可以填充地面振动状态。利用选定激发态的自发衰减,人们可以将分子以窄振动态的分布积累在地电势中。或者,通过从脉冲组之间的光路中删除生成的分子,可以创建处于低振动状态的分子的低密度集合。

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