论文标题
在电子玻璃中观察经典至量子交叉
Observation of classical to quantum crossover in electron glass
论文作者
论文摘要
玻璃是一种无处不在的物质状态,例如冷冻液体,是基础和应用科学的一个开创性问题,长期以来一直在古典力学的框架中进行了研究。玻璃物理学中的一个挑战是探索玻璃的量子力学行为。然而,在实验上,玻璃的实际量子表现以及经典玻璃和量子玻璃之间的关系是完全未知的,在实际系统中仍有待观察。在这里,我们报告了在有机材料中相互作用的电子相互作用的挫败感引起的电荷玻璃状态下对经典量子进化的直接观察。我们采用拉曼光谱法来捕获每个分子的电荷密度分布的快照,以一系列的电荷玻璃在具有不同几何挫败感的三角形晶格上形成。在不太沮丧的玻璃中,电荷密度曲线表现出类似粒子的两值分布。但是,它变得连续并随着挫败感越来越狭窄,证明了经典的Quantum跨界。此外,电荷密度分布在经典和量子玻璃中显示出对比度的温度演变,从而使我们能够描绘具有不同特征的能量景观。目前的结果是第一个实验识别量子电荷玻璃并显示其从古典玻璃中出现的结果。
Glass, a ubiquitous state of matter like a frozen liquid, is a seminal issue across fundamental and applied sciences and has long been investigated in the framework of classical mechanics. A challenge in glass physics is the exploration of the quantum-mechanical behaviour of glass. Experimentally, however, the real quantum manifestation of glass and the relationship between classical and quantum glass are totally unknown and remain to be observed in real systems. Here, we report the direct observation of classical-to-quantum evolution in the frustration-induced charge glass state exhibited by interacting electrons in organic materials. We employ Raman spectroscopy to capture a snapshot of the charge density distribution of each molecule in a series of charge glasses formed on triangular lattices with different geometrical frustrations. In less frustrated glass, the charge density profile exhibits a particle-like two-valued distribution; however, it becomes continuous and narrowed with increasing frustration, demonstrating the classical-to-quantum crossover. Moreover, the charge density distribution shows contrasting temperature evolution in classical and quantum glasses, enabling us to delineate energy landscapes with distinct features. The present result is the first to experimentally identify the quantum charge glass and show how it emerges from classical glass.