Wu Qi-Cheng, Chen Ye-Hong, Huang Bi-Hua, Song Jie, Xia Yan, Zheng Shi-Biao
Opt Express. 2016 Oct 3;24(20):22847-22864. doi: 10.1364/OE.24.022847.
We propose a method to improve the stimulated Raman adiabatic passage (STIRAP) via dissipative quantum dynamics, taking into account the dephasing effects. Fast and robust population transfer can be obtained with the scheme by the designed pulses and detuning, even though the initial state of the system is imperfect. With a concrete three-level system as an example, the influences of the imperfect initial state, variations in the control parameters, and various dissipation effects are discussed in detail. The numerical simulation shows that the scheme is insensitive to moderate fluctuations of experimental parameters and the relatively large dissipation effects of the excited state. Furthermore, the dominant dissipative factors, namely, the dephasing effects of the ground states and the imperfect initial state are no longer undesirable, in fact, they are the important resources to the scheme. Therefore, the scheme could provide more choices for the realization of the complete population transfer in the strong dissipative fields where the standard stimulated Raman adiabatic passage or shortcut schemes are invalid.
我们提出一种通过耗散量子动力学来改进受激拉曼绝热通道(STIRAP)的方法,该方法考虑了退相效应。通过设计的脉冲和失谐,即使系统的初始状态不完善,也可以用该方案获得快速且稳健的粒子转移。以一个具体的三能级系统为例,详细讨论了不完善初始状态、控制参数变化以及各种耗散效应的影响。数值模拟表明,该方案对实验参数的适度波动以及激发态相对较大的耗散效应不敏感。此外,主要的耗散因素,即基态的退相效应和不完善的初始状态,不再是不利因素,事实上,它们是该方案的重要资源。因此,该方案可以为在标准受激拉曼绝热通道或捷径方案无效的强耗散场中实现完全粒子转移提供更多选择。