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Time reversible evolution via nonadiabatic coupling in adiabatic dark subspace

机译:绝热暗子空间中非绝热耦合的时间可逆演化

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摘要

We propose a method for the creation of arbitrary superposition of N atomic states using generalized stimulated Raman adiabatic passage (STIRAP) techniques with laser fields coupling each one of N lower states to a single upper state in a (N + 1)-level atomic system. (N - 1) dark states that are composed of N lower states span a dark subspace. In the adiabatic limit, the dark and bright subspaces are decoupled, thus the nonadiabatic interaction within this dark subspace dominates the evolution of the system. Different from general methods to create our required coherent superposition state, in a reverse way, here we consider the required state as the starting point of evolution dynamics, and utilize laser fields to drive it into a single lower state step by step. Time reverse pulses of laser fields return the single lower state back to our required coherent superposition state based on time reversal symmetry. In principle, the computationally simple method allows the case with a large value of N. Based on the STIRAP techniques, it is robust against small variations of parameters of laser pulses and is immune to spontaneous radiation.
机译:我们提出了一种使用广义受激拉曼绝热通道(STIRAP)技术创建N个原子态的任意叠加的方法,该技术的激光场将N个低态中的每一个耦合到(N + 1)级原子系统中的单个高态中。由N个较低状态组成的(N-1)个黑暗状态跨越一个黑暗子空间。在绝热极限中,暗子空间和亮子空间解耦,因此该暗子空间中的非绝热相互作用主导了系统的演化。与创建所需的相干叠加状态的一般方法不同,在相反的情况下,这里我们将所需的状态视为演化动力学的起点,并利用激光场逐步将其驱动为单个较低状态。激光场的时间反向脉冲基于时间反向对称性,将单个较低的状态返回到我们所需的相干叠加状态。原则上,计算简单的方法允许N值较大的情况。基于STIRAP技术,它对激光脉冲参数的微小变化具有鲁棒性,并且可以抵抗自发辐射。

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