Adiabatic quantum trajectories in engineered reservoirs

IF 5.1 2区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Quantum Pub Date : 2024-07-30 DOI:10.22331/q-2024-07-30-1428
Emma C. King, Luigi Giannelli, Raphaël Menu, Johannes N. Kriel, Giovanna Morigi
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Abstract

We analyze the efficiency of protocols for adiabatic quantum state transfer assisted by an engineered reservoir. The target dynamics is a quantum trajectory in the Hilbert space and is a fixed point of a time-dependent master equation in the limit of adiabatic dynamics. We specialize to quantum state transfer in a qubit and determine the optimal schedule for a class of time-dependent Lindblad equations. The speed limit on state transfer is extracted from a physical model of a qubit coupled to a reservoir, from which the Lindblad equation is derived in the Born-Markov limit. Our analysis shows that the resulting efficiency is comparable to the efficiency of the optimal unitary dynamics. Numerical studies indicate that reservoir-engineered protocols could outperform unitary protocols outside the regime of the Born-Markov master equation, namely, when correlations between the qubit and reservoir become relevant. Our study contributes to the theory of shortcuts to adiabaticity for open quantum systems and to the toolbox of protocols of the NISQ era.
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工程水库中的绝热量子轨迹
我们分析了绝热量子态转移协议在工程储层辅助下的效率。目标动力学是希尔伯特空间中的量子轨迹,是绝热动力学极限中随时间变化的主方程的固定点。我们专门研究了量子比特中的量子态转移,并确定了一类与时间相关的林德布拉德方程的最佳时间表。状态转移的速度限制是从一个与储层耦合的量子比特物理模型中提取出来的,而林德布拉德方程则是在博恩-马尔科夫极限中推导出来的。我们的分析表明,由此得出的效率与最优单元动力学的效率相当。数值研究表明,在玻恩-马尔科夫主方程体系之外,即当量子比特与储层之间的相关性变得相关时,储层工程协议的性能会优于单元协议。我们的研究为开放量子系统的绝热捷径理论和 NISQ 时代的协议工具箱做出了贡献。
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来源期刊
Quantum
Quantum Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
9.20
自引率
10.90%
发文量
241
审稿时长
16 weeks
期刊介绍: Quantum is an open-access peer-reviewed journal for quantum science and related fields. Quantum is non-profit and community-run: an effort by researchers and for researchers to make science more open and publishing more transparent and efficient.
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