论文标题

由远程库仑相互作用引起的伪制品金属

Pseudogap metal induced by long-range Coulomb interactions

论文作者

Driscoll, Katherine, Ralko, Arnaud, Fratini, Simone

论文摘要

在相关的电子系统中,材料的金属特性可以在整数传导电子浓度附近被严重抑制,因为库仑相互作用禁止局部原子轨道的双重占用。尽管已经研究了这种现场相互作用引起的莫特 - 哈伯德物理学,但在相关材料中观察到的几种无法解释的现象挑战了这种描述,并呼吁发展新思想。在这里,我们探索了获得相关行为的一般途径,该途径与自旋相关的莫特 - 哈伯德机构绝对不同,而依赖于存在未经检查,远程库仑相互作用的存在。我们发现一个伪制成金属相,其特征在于不同的准粒子质量和电子光谱中库仑伪模的开口。由于电子在离散的晶格上的令人沮丧的远距离电势的令人沮丧的性质,集体电荷重排大大减慢了集体电荷的重排,因此,由于电子在几乎冷冻的电荷背景中移动,因此发生了费米 - 液态的破坏。目前的伪制品金属意识到EFROS的早期猜想是,由于自我产生的随机性,应出现柔软的库仑间隙,该量子差距具有较强的未弥补相互作用的量子晶格电子。

In correlated electron systems the metallic character of a material can be strongly suppressed near an integer concentration of conduction electrons as Coulomb interactions forbid the double occupancy of local atomic orbitals. While the Mott-Hubbard physics arising from such on-site interactions has been largely studied, several unexplained phenomena observed in correlated materials challenge this description and call for the development of new ideas. Here we explore a general route for obtaining correlated behavior that is decidedly different from the spin-related Mott-Hubbard mechanism and instead relies on the presence of unscreened, long-range Coulomb interactions. We find a pseudogap metal phase characterized by a divergent quasiparticle mass and the opening of a Coulomb pseudogap in the electronic spectrum. The destruction of the Fermi-liquid state occurs because the electrons move in a nearly frozen, disordered charge background, as collective charge rearrangements are drastically slowed down by the frustrating nature of long-range potentials on discrete lattices. The present pseudogap metal realizes an early conjecture by Efros, that a soft Coulomb gap should appear for quantum lattice electrons with strong unscreened interactions due to self-generated randomness.

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