Quadriexciton Binding Energy in Electron–Hole Bilayers

IF 1.9 Q3 PHYSICS, CONDENSED MATTER
Cesare Malosso, G. Senatore, S. De Palo
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引用次数: 0

Abstract

Excitonic condensation and superfluidity have recently received a renewed attention, due to the fabrication of bilayer systems in which electrons and holes are spatially separated and form stable pairs known as indirect excitons. Dichalcogenides- and graphene-based bilayers are nowadays built and investigated, giving access to systems with (i) only spin degeneracy and (ii) spin and valley degeneracy. Simulation studies performed in the last decades at T=0 for simple, model electron–hole bilayers, as function of the interlayer distance and in-layer carrier density, have revealed in case (i) the formation of biexcitons in a tiny region of the parameter space and in case (ii) the formation of stable compounds made of four electrons and four holes (quadriexcitons) in a sizable region of the parameter space. Of some interest is the relation of the properties of isolated biexcitons (quadriexcitons) and those of their finite-density counterpart. In fact, the isolated biexciton has been repeatedly studied in the last years with simulations and other techniques. No simulations, instead, are available to our knowledge for the isolated quadriexciton, for which we present here results of the first quantum Monte Carlo (QMC) study. Stability with respect to the dissociation into biexcitons and the pair correlations while varying the interlayer distance d are discussed.
电子-空穴双层中的四极子结合能
由于双层系统的制造,电子和空穴在空间上分离并形成称为间接激子的稳定对,激子凝聚和超流体性最近再次受到关注。如今,基于二硫族化合物和石墨烯的双层被构建和研究,从而获得了具有(i)仅自旋简并性和(ii)自旋和谷简并性的系统。在过去几十年中,在T=0时对简单的模型电子-空穴双层进行了模拟研究,作为层间距离和层内载流子密度的函数,已经揭示了在情况(i)在参数空间的微小区域中形成双激子,以及在情况(ii)在参数太空的相当大的区域中形成由四个电子和四个空穴组成的稳定化合物(四激子)。令人感兴趣的是孤立双激子(四激子)的性质与其有限密度对应物的性质之间的关系。事实上,在过去的几年里,人们通过模拟和其他技术反复研究了孤立的双激子。相反,据我们所知,对于孤立的四激子,没有可用的模拟,我们在这里介绍了第一次量子蒙特卡罗(QMC)研究的结果。讨论了在改变层间距离d时离解为双激子的稳定性和对相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Condensed Matter
Condensed Matter PHYSICS, CONDENSED MATTER-
CiteScore
2.90
自引率
11.80%
发文量
58
审稿时长
10 weeks
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