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首页> 外文期刊>Journal of Low Temperature Physics >Optimal Control of Cold Ground-State Collisions by Shaped Laser Pulses
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Optimal Control of Cold Ground-State Collisions by Shaped Laser Pulses

机译:成形激光脉冲对冷基态碰撞的最优控制

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摘要

This works investigates the optimal laser control of the electronic ground-state collision of two cold atoms of distinct species. The control goal is to perform the photoassociation of the colliding pair of atoms along with the vibrational–rotational stabilization of the diatomic molecule taking advantage of the permanent dipole moment associated with the collision. Calculations are performed within a model system for the electronic ground state of Li+Cs. It is shown that an optimized laser pulse can induce the transition from the free state to the molecular rotational–vibrational ground state with high efficiency.
机译:这项工作研究了不同物种的两个冷原子的电子基态碰撞的最佳激光控制。控制目标是利用与碰撞相关的永久偶极矩来执行碰撞原子对的光缔合以及双原子分子的振动-旋转稳定性。在Li + Cs电子基态的模型系统内进行计算。结果表明,优化的激光脉冲可以高效地诱导从自由态到分子旋转振动基态的跃迁。

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