论文标题

使用Synchrotron X射线探测短期镍液超晶格的电子和磁过渡

Probing electronic and magnetic transitions of short periodic nickelate superlattices using synchrotron x-ray

论文作者

Middey, S., Patel, Ranjan Kumar, Meyers, D., Shafer, P., Kareev, M., Freeland, J. W., Kim, J. -W., Ryan, P. J., Chakhalian, J.

论文摘要

基于过渡金属的氧化金属异质结构表现出多样化的新兴现象,例如二维电子气体,超导性,非连续性磁相,铁电性,极性涡流,拓扑厅效应等,它们在组成的大量氧化物中不存在。在这样的纳米厚材料中对这些特性的显微镜理解极具挑战性。基于X射线X射线的同步器X射线衍射,X射线吸收光谱(XAS),谐振X射线散射(RXS),谐振无弹性X射线散射(RIX),X射线光功能光谱等对于阐明植物,或收取或饲养饲料的效果的响应至关重要。作为复杂行为的典型情况,近年来已经对基于RE = LA,PR,ND,SM,EU,LU)的稀土镍(Renio3 nioio3)进行了广泛的研究。有关这些系统的广泛文献存在,并且为了概述该领域,我们将有兴趣的读者推荐给最近的《材料研究年度评论》 46,305(2016)的评论,以及有关物理学进展的报告81,046501(2018)。在本文中,我们对基于同步加速器的技术的使用进行了简短的审查,以研究一组特定的EUNIO3/LANIO3超级晶格,该系列专门设计用于解决RENIO3系列的同时电子,磁性和结构过渡的长期困难。

Transition metal based oxide heterostructures exhibit diverse emergent phenomena e.g. two dimensional electron gas, superconductivity, non-collinear magnetic phase, ferroelectricity, polar vortices, topological Hall effect etc., which are absent in the constituent bulk oxides. The microscopic understandings of these properties in such nanometer thick materials are extremely challenging. Synchrotron x-ray based techniques such as x-ray diffraction, x-ray absorption spectroscopy (XAS), resonant x-ray scattering (RXS), resonant inelastic x-ray scattering (RIXS), x-ray photoemission spectroscopy, etc. are essential to elucidating the response of lattice, charge, orbital, and spin degrees of freedoms to the heterostructuring. As a prototypical case of complex behavior, rare-earth nickelates (RENiO3 with RE=La, Pr, Nd, Sm, Eu, Lu) based thin films and heterostructures have been investigated quite extensively in recent years. An extensive body of literature about these systems exists and for an overview of the field, we refer the interested readers to the recent reviews Annual Review of Materials Research 46, 305 (2016) and Reports on Progress in Physics 81, 046501 (2018). In the present article, we give a brief review that concentrates on the use of synchrotron based techniques to investigate a specific set of EuNiO3/LaNiO3 superlattices, specifically designed to solve a long-standing puzzle about the origin of simultaneous electronic, magnetic and structural transitions of the RENiO3 series.

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