Fast-forward scaling of atom-molecule conversion in Bose-Einstein condensates

Jing-Jun Zhu, Xi Chen
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引用次数: 6

Abstract

Robust stimulated Raman exact passages are requisite for controlling nonlinear quantum systems, with the wide applications ranging from ultracold molecules, non-linear optics to superchemistry. Inspired by shortcuts to adiabaticity, we propose the fast-forward scaling of stimulated Raman adiabatic processes with the nonlinear?ity involved, describing the transfer from an atomic Bose-Einstein condensate to a molecular one by controllable external fields. The fidelity and robustness of atom-molecule conversion are shown to surpass those of conven?tional adiabatic passages, assisted by fast-forward driving field. Finally, our results are extended to the fractional stimulated Raman adiabatic processes for the coherent superposition of atomic and molecular states.
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玻色-爱因斯坦凝聚体中原子-分子转换的快进缩放
鲁棒受激拉曼精确通道是控制非线性量子系统的必要条件,在超冷分子、非线性光学和超化学等领域有着广泛的应用。受绝热的捷径启发,我们提出了用非线性?描述了通过可控外场从原子玻色-爱因斯坦凝聚物到分子凝聚物的转移。原子-分子转化的保真度和稳健性均优于常规方法。传统绝热通道,辅以快进驱动场。最后,我们的结果推广到原子和分子态相干叠加的分数受激拉曼绝热过程。
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