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在亚周期时间尺度上的弗洛凯-布洛赫能带的建立和退相。

Build-up and dephasing of Floquet-Bloch bands on subcycle timescales.

机构信息

Department of Physics, Philipps-University of Marburg, Marburg, Germany.

Laboratory for Materials Simulations, Paul Scherrer Institute, Villigen PSI, Switzerland.

出版信息

Nature. 2023 Apr;616(7958):696-701. doi: 10.1038/s41586-023-05850-x. Epub 2023 Apr 12.

Abstract

Strong light fields have created opportunities to tailor novel functionalities of solids. Floquet-Bloch states can form under periodic driving of electrons and enable exotic quantum phases. On subcycle timescales, lightwaves can simultaneously drive intraband currents and interband transitions, which enable high-harmonic generation and pave the way towards ultrafast electronics. Yet, the interplay of intraband and interband excitations and their relation to Floquet physics have been key open questions as dynamical aspects of Floquet states have remained elusive. Here we provide this link by visualizing the ultrafast build-up of Floquet-Bloch bands with time-resolved and angle-resolved photoemission spectroscopy. We drive surface states on a topological insulator with mid-infrared fields-strong enough for high-harmonic generation-and directly monitor the transient band structure with subcycle time resolution. Starting with strong intraband currents, we observe how Floquet sidebands emerge within a single optical cycle; intraband acceleration simultaneously proceeds in multiple sidebands until high-energy electrons scatter into bulk states and dissipation destroys the Floquet bands. Quantum non-equilibrium calculations explain the simultaneous occurrence of Floquet states with intraband and interband dynamics. Our joint experiment and theory study provides a direct time-domain view of Floquet physics and explores the fundamental frontiers of ultrafast band-structure engineering.

摘要

强场为定制固体的新颖功能提供了机会。在周期性电子驱动下可以形成弗洛凯-布洛赫态,从而实现奇异的量子相。在亚周期时间尺度上,光波可以同时驱动内能带电流和带间跃迁,从而实现高次谐波产生,并为超快电子学铺平道路。然而,内能带和带间激发之间的相互作用及其与弗洛凯物理的关系一直是关键的开放性问题,因为弗洛凯态的动力学方面仍然难以捉摸。在这里,我们通过时间分辨和角度分辨光发射谱学来可视化弗洛凯-布洛赫带的超快建立,提供了这种联系。我们用足够强的中红外场驱动拓扑绝缘体上的表面态,以实现高次谐波产生,并以亚周期时间分辨率直接监测瞬态能带结构。从强内能带电流开始,我们观察到弗洛凯边带如何在单个光周期内出现;内能带加速同时在多个边带中进行,直到高能电子散射到体相中,耗散破坏了弗洛凯带。量子非平衡计算解释了同时存在的内能带和带间动力学的弗洛凯态。我们的联合实验和理论研究提供了弗洛凯物理的直接时域视角,并探索了超快能带结构工程的基本前沿。

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