论文标题

在两轨电子系统中共存金属和绝缘阶段的扩展状态

Extended regime of coexisting metallic and insulating phases in a two-orbital electronic system

论文作者

Vandelli, M., Kaufmann, J., Harkov, V., Lichtenstein, A. I., Held, K., Stepanov, E. A.

论文摘要

我们研究了由四分之一填充模型中密度密度的电子相互作用驱动的金属对绝缘体相变,该密度密度的相互作用在三次晶格上,两个轨道由晶体场分开。我们表明,对非本地集体电子波动的系统考虑强烈影响动态平均场理论提供的相变的图像。我们的计算揭示了金属和莫特绝缘态的出现,其特征是相同的密度但具有不同的化学电位值,这在局部与电子相关性的局部近似中所缺少。我们发现,从相互作用强度方面,这两种溶液的递合稳定性区域非常广泛。它从相互作用的临界值开始,略大于带宽,并延伸至带宽的两倍以上,其中两种溶液合并为莫特绝缘阶段。我们的结果表明,非本地相关性可能会对最简单的多轨系统强度相关性方案中的电子特性产生至关重要的后果。

We investigate the metal-to-insulator phase transition driven by the density-density electronic interaction in the quarter-filled model on a cubic lattice with two orbitals split by a crystal field. We show that a systematic consideration of the non-local collective electronic fluctuations strongly affects the picture of the phase transition provided by the dynamical mean field theory. Our calculations reveal the appearance of metallic and Mott insulating states characterised by the same density but different values of the chemical potential, which is missing in the local approximation to electronic correlations. We find that the region of concomitant metastability of these two solutions is remarkably broad in terms of the interaction strength. It starts at a critical value of the interaction slightly larger than the bandwidth and extends to more than twice the bandwidth, where the two solutions merge into a Mott insulating phase. Our results illustrate that non-local correlations can have crucial consequences on the electronic properties in the strongly correlated regime of the simplest multi-orbital systems.

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