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稀土镍酸盐类石墨烯人工晶体中的莫特电子

Mott Electrons in an Artificial Graphenelike Crystal of Rare-Earth Nickelate.

作者信息

Middey S, Meyers D, Doennig D, Kareev M, Liu X, Cao Y, Yang Zhenzhong, Shi Jinan, Gu Lin, Ryan P J, Pentcheva R, Freeland J W, Chakhalian J

机构信息

Department of Physics, University of Arkansas, Fayetteville, Arkansas 72701, USA.

Department of Earth and Environmental Sciences and Center of Nanoscience, University of Munich, Munich D-80333, Germany.

出版信息

Phys Rev Lett. 2016 Feb 5;116(5):056801. doi: 10.1103/PhysRevLett.116.056801. Epub 2016 Feb 1.

Abstract

Deterministic control over the periodic geometrical arrangement of the constituent atoms is the backbone of the material properties, which, along with the interactions, define the electronic and magnetic ground state. Following this notion, a bilayer of a prototypical rare-earth nickelate, NdNiO_{3}, combined with a dielectric spacer, LaAlO_{3}, has been layered along the pseudocubic [111] direction. The resulting artificial graphenelike Mott crystal with magnetic 3d electrons has antiferromagnetic correlations. In addition, a combination of resonant X-ray linear dichroism measurements and ab initio calculations reveal the presence of an ordered orbital pattern, which is unattainable in either bulk nickelates or nickelate based heterostructures grown along the [001] direction. These findings highlight another promising venue towards designing new quantum many-body states by virtue of geometrical engineering.

摘要

对构成原子的周期性几何排列进行确定性控制是材料特性的核心,这些特性与相互作用一起决定了电子和磁基态。基于这一概念,一种典型的稀土镍酸盐NdNiO₃与电介质间隔层LaAlO₃形成的双层结构,已沿赝立方[111]方向进行了层状堆叠。由此产生的具有磁性3d电子的类石墨烯人工莫特晶体具有反铁磁相关性。此外,共振X射线线性二色性测量和从头算计算相结合,揭示了一种有序轨道模式的存在,这在块状镍酸盐或沿[001]方向生长的镍酸盐基异质结构中均无法实现。这些发现突出了通过几何工程设计新的量子多体状态的另一个有前景的途径。

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