Institute for Solid State Physics, University of Tokyo, Kashiwa, Chiba, 277-8581, Japan.
Department of Physics, University of Tokyo, Bunkyo-ku, Tokyo, 113-0033, Japan.
Nat Commun. 2018 Oct 17;9(1):4322. doi: 10.1038/s41467-018-06801-1.
Using light to manipulate materials into desired states is one of the goals in condensed matter physics, since light control can provide ultrafast and environmentally friendly photonics devices. However, it is generally difficult to realise a photo-induced phase which is not merely a higher entropy phase corresponding to a high-temperature phase at equilibrium. Here, we report realisation of photo-induced insulator-to-metal transitions in TaNi(SeS) including the excitonic insulator phase using time- and angle-resolved photoemission spectroscopy. From the dynamic properties of the system, we determine that screening of excitonic correlations plays a key role in the timescale of the transition to the metallic phase, which supports the existence of an excitonic insulator phase at equilibrium. The non-equilibrium metallic state observed unexpectedly in the direct-gap excitonic insulator opens up a new avenue to optical band engineering in electron-hole coupled systems.
用光将物质操纵到所需状态是凝聚态物理的目标之一,因为光控制可以提供超快和环保的光子学器件。然而,通常很难实现不仅仅是对应于平衡高温相的更高熵相的光致相。在这里,我们使用时间和角度分辨光发射光谱报告了 TaNi(SeS)中包括激子绝缘相在内的光致绝缘-金属转变的实现。从系统的动态特性来看,我们确定激子相关的屏蔽在向金属相转变的时间尺度上起着关键作用,这支持了平衡时存在激子绝缘相。在直接带隙激子绝缘相中观察到的出乎意料的非平衡金属态为电子-空穴耦合系统中的光学能带工程开辟了新途径。