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由 NdNiO3 制成的莫特型量子阱中的金属-绝缘相变和轨道重构。

Metal-insulator transition and orbital reconstruction in Mott-type quantum wells made of NdNiO3.

机构信息

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

出版信息

Phys Rev Lett. 2012 Sep 7;109(10):107402. doi: 10.1103/PhysRevLett.109.107402.

Abstract

The metal-insulator transition and the underlying electronic and orbital structure in e(g)(1) quantum wells based on NdNiO3 were investigated by dc transport and resonant soft x-ray absorption spectroscopy. By comparing quantum wells of the same dimension but with two different confinement structures, we explicitly demonstrate that the quantum well boundary condition of correlated electrons is critical to selecting the many-body ground state. In particular, the long-range orderings and the metal-insulator transition are found to be strongly enhanced under quantum confinement by sandwiching NdNiO(3) with the wide-gap dielectric LaAlO(3), while they are suppressed when one of the interfaces is replaced by a surface (interface with vacuum). Resonant spectroscopy reveals that the reduced charge fluctuations in the sandwich structure are supported by the enhanced propensity to charge ordering due to the suppressed e(g) orbital splitting when interfaced with the confining LaAlO3 layer.

摘要

基于 NdNiO3 的 e(g)(1)量子阱中的金属-绝缘体转变及相关电子和轨道结构通过直流输运和共振软 X 射线吸收光谱进行了研究。通过比较具有相同尺寸但具有两种不同限制结构的量子阱,我们明确表明,相关电子的量子阱边界条件对于选择多体基态至关重要。特别是,通过用宽能隙介电体 LaAlO(3)夹在 NdNiO(3)之间,发现长程有序和金属-绝缘体转变在量子限制下得到了强烈增强,而当界面之一被表面(与真空的界面)取代时,它们则受到抑制。共振光谱表明,由于界面与限制 LaAlO3 层相互作用时抑制了 e(g)轨道分裂,从而增强了电荷有序的倾向,因此夹层结构中的电荷波动减少。

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