4.6 Article

Interlayer Bound Wannier Excitons in Germanium Sulfide

期刊

MATERIALS
卷 13, 期 16, 页码 -

出版社

MDPI
DOI: 10.3390/ma13163568

关键词

germanium sulfide; cathodoluminescence; 2D materials; density functional theory; anisotropy; many body perturbation theory; hexagonal boron nitride

资金

  1. Villum Fonden through the Young Investigator Program [19130]
  2. Villum Fonden via VILLUM Investigator grant [16498]
  3. Italian Ministry of Education, University and Research (MIUR) via Programma per Giovani Ricercatori-Rita Levi Montalcini 2017
  4. EU MSCA HORIZON2020 project DiSeTCom [GA 823728]

向作者/读者索取更多资源

We report a cathodoluminescence (CL) study of layered germanium sulfide (GeS) where we observe a sharp emission peak from flakes covered with a thin hexagonal boron nitride film. GeS is a material that has recently attracted considerable interest due to its emission in the visible region and its strong anisotropy. The measured CL peak is at similar to 1.69 eV for samples ranging in thickness from 97 nm to 45 nm, where quantum-confinement effects can be excluded. By performingab initioground- and excited-state simulations for the bulk compound, we show that the measured optical peak can be unambiguously explained by radiative recombination of the first free bright bound exciton, which is due to a mixing of direct transitions near the Gamma-point of the Brillouin Zone and it is associated to a very large optical anisotropy. The analysis of the corresponding excitonic wave function shows a Wannier-Mott interlayer character, being spread not only in-plane but also out-of-plane.

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