vix.ing · top · new · best · stats · spec

Anomalous exciton Rydberg series in two-dimensional semiconductors on high-κ dielectric substrates

2020/09/25 by Anders C. Riis-Jensen, Morten N. Gjerding, Saverio Russo +1
Materials Science · Physics and Astronomy · #2D Materials and Applications #Dielectric #Electronic and Structural Properties of Oxides #Exciton #Rydberg constant #Rydberg formula #Semiconductor #Series (stratigraphy) #Topological Materials and Phenomena #cond-mat.mtrl-sci

paper · pdf · doi:10.1103/physrevb.102.201402

published as Phys. Rev. B 102, 201402 (2020)

arxiv created 2020/09/25 · openalex created_date 2020/10/01 · openalex publication_date 2020/11/10 · arxiv updated 2020/11/18 · openalex updated_date 2026/08/05

Abstract

Engineering of the dielectric environment represents a powerful strategy to control the electronic and optical properties of two-dimensional (2D) materials without compromising their structural integrity. Here we show that the use of high-\ensuremathκ dielectrics presents new opportunities for controlling the excitonic states of 2D semiconductors. By solving a 2D Mott-Wannier exciton model for WSe2 on different substrates using a screened electron-hole interaction obtained from first principles, we demonstrate that the exciton Rydberg series changes qualitatively when the dielectric screening within the 2D semiconductor becomes dominated by the substrate. In this regime, the distance dependence of the screening is reversed and the effective screening increases with exciton radius, which is opposite to the conventional 2D screening regime. Consequently, higher excitonic states become underbound rather than overbound as compared to the hydrogenic Rydberg series. Finally, we derive a general analytical expression for the exciton binding energy of the entire 2D Rydberg series.

Citations