论文标题
直接观察相关氧化物界面处的二维小极地
Direct observation of two-dimensional small polarons at correlated oxide interface
论文作者
论文摘要
二维(2d)钙钛矿氧化物界面是理想的系统,可以发现各种新兴特性。由于短距离强度的强度强度粘贴相互作用而引起的二极化属性的形成和修改仍然存在着极大的吸引力。首先要进行的椭圆测量结果进一步表明,界面电子与Ti-lattice之间的牢固耦合导致形成局部2D小极极子的形成。这些发现是在实验测量的过多的界面载体密度与理论上的较低量相吻合的长期问题。在理论上均高于理论上的较低量。魔法角扭曲的双层石墨烯归因于破裂的周期性晶格对称性引起的多体相关性。
Two-dimensional (2D) perovskite oxide interfaces are ideal systems where diverse emergent properties can be uncovered.The formation and modification of polaronic properties due to short-range strong charge-lattice interactions of 2D interfaces remains hugely intriguing.Here, we report the direct observation of small-polarons at the LaAlO3/SrTiO3 (LAO/STO) conducting interface using high-resolution spectroscopic ellipsometry.First-principles investigations further reveals that strong coupling between the interfacial electrons and the Ti-lattice result in the formation of localized 2D small polarons.These findings resolve the longstanding issue where the excess experimentally measured interfacial carrier density is significantly lower than theoretically predicted values.The charge-phonon induced lattice distortion further provides an analogue to the superconductive states in magic-angle twisted bilayer graphene attributed to the many-body correlations induced by broken periodic lattice symmetry.Our study sheds light on the multifaceted complexity of broken periodic lattice induced quasi-particle effects and its relationship with superconductivity.