paper

High temperature electron-hole superfluidity with strong anisotropic gaps in double phosphorene monolayers

arXiv:1804.06889 · doi:10.1103/PhysRevB.97.174503

Abstract

Excitonic superfluidity in double phosphorene monolayers is investigated using the BCS mean-field equations. Highly anisotropic superfluidity is predicted where we found that the maximum superfluid gap is in the BEC regime along the armchair direction and in the BCS-BEC crossover regime along the zigzag direction. We estimate the highest Kosterlitz-Thouless transition temperature with maximum value up to K with onset carrier densities as high as cm. This transition temperature is significantly larger than what is found in double electron-hole few-layers of graphene. Our results can guide experimental research towards the realization of anisotropic condensate states in electron-hole phosphorene monolayers.

7 pages, 4 figures