Wang J, Wu Y N, Xie Z Y
School of physics and technology, University of Jinan, Jinan, 250022, China.
Sci Rep. 2018 Nov 15;8(1):16870. doi: 10.1038/s41598-018-34890-x.
Quantum evolution can be accelerated in a non-Markovian environment. Previous results show that the formation of a system-environment bound state governs the quantum speedup. Although a stronger bound state in the system-environment spectrum may seem like it should cause greater speed of evolution, this seemingly intuitive thinking may not always be correct. We illustrate this by investigating a classical-driven qubit interacting with a photonic crystal waveguide in the presence of a mirror, resulting in non-Markovian dynamics for the system. Within the considered model, we show the influence of the mirror and the classical field on the evolution speed of the system. In particular, we find that the formation of a bound state is not the essential reason for the acceleration of evolution. The quantum speedup is attributed to the flow of information, regardless of the direction in which the information flows. Our conclusion can also be used in other non-Markovian environments.
在非马尔可夫环境中,量子演化可以加速。先前的结果表明,系统 - 环境束缚态的形成支配着量子加速。尽管在系统 - 环境谱中更强的束缚态似乎应该导致更快的演化速度,但这种看似直观的想法可能并不总是正确的。我们通过研究一个在有镜子存在的情况下与光子晶体波导相互作用的经典驱动量子比特来说明这一点,这导致了系统的非马尔可夫动力学。在考虑的模型中,我们展示了镜子和经典场对系统演化速度的影响。特别是,我们发现束缚态的形成不是演化加速的本质原因。量子加速归因于信息流,而不管信息流的方向如何。我们的结论也可以应用于其他非马尔可夫环境。