Unconventional superconductivity in a strongly correlated band-insulator without doping

Anwesha Chattopadhyay, H. R. Krishnamurthy, A. Garg
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引用次数: 2

Abstract

We present a novel route for attaining unconventional superconductivity (SC) in a strongly correlated system without doping. In a simple model of a correlated band insulator (BI) at half-filling we demonstrate, based on a generalization of the projected wavefunctions method, that SC emerges when e-e interactions and the bare band-gap are both much larger than the kinetic energy, provided the system has sufficient frustration against the magnetic order. As the interactions are tuned, SC appears sandwiched between the correlated BI followed by a paramagnetic metal on one side, and a ferrimagnetic metal, antiferromagnetic (AF) half-metal, and AF Mott insulator phases on the other side.
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非掺杂强相关带绝缘体中的非常规超导性
我们提出了一种在不掺杂的强相关体系中获得非常规超导性(SC)的新途径。在一个简单的半填充相关带绝缘体(BI)模型中,基于投影波函数方法的推广,我们证明了当e-e相互作用和裸带隙都远远大于动能时,只要系统对磁序有足够的挫折,SC就会出现。随着相互作用的调整,SC出现在相关的BI之间,其中一边是顺磁性金属,另一边是铁磁性金属,反铁磁性(AF)半金属和AF莫特绝缘体相。
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