Ding Yi-Kai, Zhang Zuo-Yuan, Liu Jin-Ming
State Key Laboratory of Precision Spectroscopy, School of Physics and Electronic Science, East China Normal University, Shanghai 200241, China.
School of Physical Science and Technology, Yangzhou University, Yangzhou 225009, China.
J Chem Phys. 2023 Nov 28;159(20). doi: 10.1063/5.0174472.
Quantum walks are the quantum counterpart of classical random walks and have various applications in quantum information science. Polar molecules have rich internal energy structure and long coherence time and thus are considered as a promising candidate for quantum information processing. In this paper, we propose a theoretical scheme for implementing discrete-time quantum walks on a circle with dipole-dipole coupled SrO molecules. The states of the walker and the coin are encoded in the pendular states of polar molecules induced by an external electric field. We design the optimal microwave pulses for implementing quantum walks on a four-node circle and a three-node circle by multi-target optimal control theory. To reduce the accumulation of decoherence and improve the fidelity, we successfully realize a step of quantum walk with only one optimal pulse. Moreover, we also encode the walker into a three-level molecular qutrit and a four-level molecular ququart and design the corresponding optimal pulses for quantum walks, which can reduce the number of molecules used. It is found that all the quantum walks on a circle in our scheme can be achieved via optimal control fields with high fidelities. Our results could shed some light on the implementation of discrete-time quantum walks and high-dimensional quantum information processing with polar molecules.
量子游走是经典随机游走的量子对应物,在量子信息科学中有各种应用。极性分子具有丰富的内能结构和较长的相干时间,因此被认为是量子信息处理的一个有前途的候选者。在本文中,我们提出了一种在具有偶极 - 偶极耦合的SrO分子的圆上实现离散时间量子游走的理论方案。游走者和硬币的状态被编码在由外部电场诱导的极性分子的摆动状态中。我们通过多目标最优控制理论设计了在四节点圆和三节点圆上实现量子游走的最优微波脉冲。为了减少退相干的积累并提高保真度,我们仅用一个最优脉冲成功实现了一步量子游走。此外,我们还将游走者编码到一个三能级分子量子比特和一个四能级分子量子四元比特中,并设计了相应的量子游走最优脉冲,这可以减少所使用的分子数量。结果发现,我们方案中圆上的所有量子游走都可以通过具有高保真度的最优控制场来实现。我们的结果可能为利用极性分子实现离散时间量子游走和高维量子信息处理提供一些启示。