论文标题
二维有机无机超晶格中的界面电荷转移激素绝缘子
Interfacial Charge-transfer Excitonic Insulator in a Two-dimensional Organic-inorganic Superlattice
论文作者
论文摘要
激子绝缘子是长期以来的量子材料,预计将通过绑定的电子孔对的玻色凝结自发地张开缝隙,即具有激素,即具有基态的激子。自从理论上的猜想以来,一直致力于追求激子绝缘剂平台,以探索实际材料中的宏观量子现象。在分层的葡萄染色剂中获得了兴奋性特征的可靠证据,作为有前途的候选者。但是,由于固有晶格不稳定性的干扰,这些特征(例如电荷密度波和间隙开口)主要是由兴奋性效应还是由晶格过渡驱动。本文中,我们在有机无机超级晶体界面中开发了一种新型的电荷转移激发型绝缘子,该界面是将激子效应从晶格效应中解脱出的理想平台。在该系统中,我们观察到狭窄的间隙开口和无周期性晶格失真的电荷密度波的形成,提供了在热平衡中发生激子冷凝的可视化证据。我们的发现确定自发的界面电荷转移是开发新型激子绝缘子并研究其相关多体物理学的新策略。
Excitonic insulators are long-sought-after quantum materials predicted to spontaneously open a gap by the Bose condensation of bound electron-hole pairs, namely, excitons, in their ground state. Since the theoretical conjecture, extensive efforts have been devoted to pursuing excitonic insulator platforms for exploring macroscopic quantum phenomena in real materials. Reliable evidences of excitonic character have been obtained in layered chalcogenides as promising candidates. However, owing to the interference of intrinsic lattice instabilities, it is still debatable whether those features, such as charge density wave and gap opening, are primarily driven by the excitonic effect or by the lattice transition. Herein, we develop a novel charge-transfer excitonic insulator in organic-inorganic superlattice interfaces, which serves as an ideal platform to decouple the excitonic effect from the lattice effect. In this system, we observe the narrow gap opening and the formation of a charge density wave without periodic lattice distortion, providing visualized evidence of exciton condensation occurring in thermal equilibrium. Our findings identify spontaneous interfacial charge transfer as a new strategy for developing novel excitonic insulators and investigating their correlated many-body physics.