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周期性驱动耗散量子系统中非平衡稳态的一般描述。

General description for nonequilibrium steady states in periodically driven dissipative quantum systems.

作者信息

Ikeda Tatsuhiko N, Sato Masahiro

机构信息

Institute for Solid State Physics, University of Tokyo, Kashiwa 277-8581, Japan.

Department of Physics, Ibaraki University, Mito, Ibaraki 310-8512, Japan.

出版信息

Sci Adv. 2020 Jul 3;6(27). doi: 10.1126/sciadv.abb4019. Print 2020 Jul.

Abstract

Laser technology has developed and accelerated photo-induced nonequilibrium physics, from both the scientific and engineering viewpoints. Floquet engineering, i.e., controlling material properties and functionalities by time-periodic drives, is at the forefront of quantum physics of light-matter interaction. However, it is limited to ideal dissipationless systems. Extending Floquet engineering to various materials requires understanding of the quantum states emerging in a balance of the periodic drive and energy dissipation. Here, we derive a general description for nonequilibrium steady states (NESSs) in periodically driven dissipative systems by focusing on systems under high-frequency drive and time-independent Lindblad-type dissipation. Our formula correctly describes the time average, fluctuation, and symmetry properties of the NESS, and can be computed efficiently in numerical calculations. This approach will play fundamental roles in Floquet engineering in a broad class of dissipative quantum systems from atoms and molecules to mesoscopic systems, and condensed matter.

摘要

从科学和工程的角度来看,激光技术推动并加速了光致非平衡物理的发展。弗洛凯工程,即通过时间周期驱动来控制材料的性质和功能,处于光与物质相互作用量子物理的前沿。然而,它仅限于理想的无耗散系统。将弗洛凯工程扩展到各种材料需要理解在周期驱动和能量耗散平衡中出现的量子态。在此,我们通过关注高频驱动和与时间无关的林德布拉德型耗散下的系统,推导出了周期性驱动耗散系统中非平衡稳态(NESSs)的一般描述。我们的公式正确地描述了NESS的时间平均值、涨落和对称性,并且在数值计算中可以高效计算。这种方法将在从原子、分子到介观系统以及凝聚态物质的广泛耗散量子系统的弗洛凯工程中发挥基础性作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2184/7458437/ec52c972e1ba/abb4019-F1.jpg

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