Song Xue-Ke, Meng Fei, Liu Bao-Jie, Wang Dong, Ye Liu, Yung Man-Hong
Opt Express. 2021 Mar 15;29(6):7998-8014. doi: 10.1364/OE.417343.
The stimulated Raman adiabatic passage shows an efficient technique that accurately transfers population between two discrete quantum states with the same parity in three-level quantum systems based on adiabatic evolution. This technique has widely theoretical and experimental applications in many fields of physics, chemistry, and beyond. Here, we present a general approach to robust stimulated Raman shortcut-to-adiabatic passage with invariant-based optimal control. By controlling the dynamical process, we inversely design a family of Hamiltonians with non-divergent Rabi frequencies that can realize fast and accurate population transfer from the first to the third level, while the systematic errors are largely suppressed in general. Furthermore, a detailed trade-off relation between the population of the intermediate state and the amplitudes of Rabi frequencies in the transfer process is illustrated. These results provide an optimal route toward manipulating the evolution of three-level quantum systems in future quantum information processing.
受激拉曼绝热通道展示了一种基于绝热演化,能在三能级量子系统中精确地在两个具有相同宇称的离散量子态之间转移布居数的有效技术。该技术在物理、化学等诸多领域有着广泛的理论和实验应用。在此,我们提出一种基于不变量的最优控制实现鲁棒受激拉曼捷径到绝热通道的通用方法。通过控制动力学过程,我们反向设计出一族具有非发散拉比频率的哈密顿量,其能够实现从第一能级到第三能级的快速且精确的布居数转移,并且一般而言系统误差能被大幅抑制。此外,还阐述了转移过程中中间态布居数与拉比频率振幅之间详细的权衡关系。这些结果为未来量子信息处理中操控三能级量子系统的演化提供了一条最优途径。