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通过时间重标实现绝热布居反转的捷径:稳定性与热力学代价

Shortcuts to adiabatic population inversion via time-rescaling: stability and thermodynamic cost.

作者信息

da Silva Andrade Jair, da Silva França Ângelo F, de Lima Bernardo Bertúlio

机构信息

Departamento de Física, Universidade Federal da Paraíba, João Pessoa, PB, 58051-900, Brazil.

出版信息

Sci Rep. 2022 Jul 7;12(1):11538. doi: 10.1038/s41598-022-15912-1.

Abstract

A shortcut to adiabaticity is concerned with the fast and robust manipulation of the dynamics of a quantum system which reproduces the effect of an adiabatic process. In this work, we use the time-rescaling method to study the problem of speeding up the population inversion of a two-level quantum system, and the fidelity of the fast dynamics versus systematic errors in the control parameters. This approach enables the generation of shortcuts from a prescribed slow dynamics by simply rescaling the time variable of the quantum evolution operator. It requires no knowledge of the eigenvalues and eigenstates of the Hamiltonian and, in principle, no additional coupling fields. From a quantum thermodynamic viewpoint, we also demonstrate that the main properties of the distribution of work required to drive the system along the shortcuts are unchanged with respect to the reference (slow) protocol.

摘要

绝热捷径关注的是对量子系统动力学进行快速且稳健的操控,这种操控能重现绝热过程的效果。在这项工作中,我们使用时间重标方法来研究加速二能级量子系统粒子数反转的问题,以及快速动力学的保真度与控制参数中的系统误差之间的关系。这种方法能够通过简单地重标量子演化算符的时间变量,从规定的慢动力学生成捷径。它不需要知道哈密顿量的本征值和本征态,并且原则上不需要额外的耦合场。从量子热力学的观点来看,我们还证明了沿着捷径驱动系统所需的功分布的主要性质相对于参考(慢)协议是不变的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9494/9262946/cebcc24a6cd7/41598_2022_15912_Fig1_HTML.jpg

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