论文标题

使用特殊点对量子热发动机的动力控制

Dynamical Control of Quantum Heat Engines Using Exceptional Points

论文作者

Zhang, J. -W., Zhang, J. -Q., Ding, G. -Y., Li, J. -C., Bu, J. -T., Wang, B., Yan, L. -L., Su, S. -L., Chen, L., Nori, F., Özdemir, Ş. K., Zhou, F., Jing, H., Feng, M.

论文摘要

量子热机是一个开放量量子系统,与热和冷热浴相连。因此,可以使用非铁量子系统的概念和工具可以很好地理解其动力学。非热性的标志是存在非特征值的特征值或liouvillian超级操作员及其相关的特征向量cocece。在这里,我们报告了单离子热发动机的实验实现,并证明了Liouvillian特殊点对量子热发动机的动力学和性能的影响。我们的实验表明,在奥托循环的等距加热和冷却中,分别以liouvillian的特殊点进行操作,分别由liouvillian的特殊点隔开,在系统具有振动型和更高的振动性动力学的确切相位。这一结果为控制量子热发动机的控制开辟了有趣的可能性,并且对与量子过程中相干性和特殊点的作用以及在热机提取工作中的作用的其他研究领域将引起人们的关注。

A quantum thermal machine is an open quantum system coupled to hot and cold thermal baths. Thus, its dynamics can be well understood using the concepts and tools from non-Hermitian quantum systems. A hallmark of non-Hermiticity is the existence of exceptional points where the eigenvalues of a non-Hermitian Hamiltonian or an Liouvillian superoperator and their associated eigenvectors coalesce. Here, we report the experimental realisation of a single-ion heat engine and demonstrate the effect of the Liouvillian exceptional points on the dynamics and the performance of a quantum heat engine. Our experiments have revealed that operating the engine in the exact- and broken-phases, separated by a Liouvillian exceptional point, respectively during the isochoric heating and cooling strokes of an Otto cycle produces more work and output power and achieves higher efficiency than executing the Otto cycle completely in the exact phase where the system has an oscillatory dynamics and higher coherence. This result opens interesting possibilities for the control of quantum heat engines and will be of interest to other research areas that are concerned with the role of coherence and exceptional points in quantum processes and in work extraction by thermal machines.

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