3.8 Article

Transition Metal Dichalcogenides as Strategy for High Temperature Electron-Hole Superfluidity

期刊

CONDENSED MATTER
卷 5, 期 1, 页码 -

出版社

MDPI
DOI: 10.3390/condmat5010022

关键词

superfluidity; exciton; electron-hole; transition-metal-dichalcogenides; multiband-superconductivity; multicomponent-superfluidity

资金

  1. Fonds Wetenschappelijk Onderzoek (FWO-Vl)
  2. Methusalem Foundation [TRANS-2D-TMD]

向作者/读者索取更多资源

Condensation of spatially indirect excitons, with the electrons and holes confined in two separate layers, has recently been observed in two different double layer heterostructures. High transition temperatures were reported in a double Transition Metal Dichalcogenide (TMD) monolayer system. We briefly review electron-hole double layer systems that have been proposed as candidates for this interesting phenomenon. We investigate the double TMD system WSe2/hBN/MoSe2, using a mean-field approach that includes multiband effects due to the spin-orbit coupling and self-consistent screening of the electron-hole Coulomb interaction. We demonstrate that the transition temperature observed in the double TMD monolayers, which is remarkably high relative to the other systems, is the result of (i) the large electron and hole effective masses in TMDs, (ii) the large TMD band gaps, and (iii) the presence of multiple superfluid condensates in the TMD system. The net effect is that the superfluidity is strong across a wide range of densities, which leads to high transition temperatures that extend as high as TBKT=150 K.

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