论文标题
访问当前携带设备中的光谱功能
Accessing the spectral function in a current-carrying device
论文作者
论文摘要
材料中电流的存在是非平衡物理学最简单,最重要的实现之一。当前的密度打破了晶体对称性,并可能引起戏剧性现象,例如滑动电荷密度波[1],绝缘体到金属转变[2,3]或拓扑保护状态的间隙开口[4]。对于电流如何影响电子光谱函数几乎一无所知,这表征了固体的电子,光学和化学特性的大多数。在这里,我们表明,具有纳米尺度光点(纳米弧)的角度分辨光发光谱法不仅提供了有关局部平衡特性的大量信息,而且还可以在存在运输电流的情况下访问局部非平衡光谱功能。以这种方式统一光谱和运输测量值可以在存在高电流密度的情况下对组成,结构,多体效应和载流子迁移率的非侵入性局部测量。
The presence of an electrical transport current in a material is one of the simplest and most important realisations of non-equilibrium physics. The current density breaks the crystalline symmetry and can give rise to dramatic phenomena, such as sliding charge density waves [1], insulator-to-metal transitions [2,3] or gap openings in topologically protected states [4]. Almost nothing is known about how a current influences the electron spectral function, which characterizes most of the solid's electronic, optical and chemical properties. Here we show that angle-resolved photoemission spectroscopy with a nano-scale light spot (nanoARPES) provides not only a wealth of information on local equilibrium properties, but also opens the possibility to access the local non-equilibrium spectral function in the presence of a transport current. Unifying spectroscopic and transport measurements in this way allows non-invasive local measurements of the composition, structure, many-body effects and carrier mobility in the presence of high current densities.