English

Resonance profiles of valley polarization in single-layer MoS$_2$ and MoSe$_2$

Applied Physics 2018-11-06 v2

Abstract

In this letter we present photoluminescence measurements with different excitation energies on single-layer MoS2_2 and MoSe2_2 in order to examine the resonance behavior of the conservation of circular polarization in these transition metal dichalcogenides. We find that the circular polarization of the emitted light is conserved to 100% in MoS2_2 and 84% / 79% (A/A^- peaks) in MoSe2_2 close to resonance. The values for MoSe2_2 surpass any previously reported value. However, in contrast to previous predictions, the degree of circular polarization decreases clearly at energies less than the two-phonon longitudinal acoustic phonon energy above the resonance. Our findings indicate that at least two competing processes underly the depolarization of the emission in single-layer transition metal dichalcogenides.

Keywords

Cite

@article{arxiv.1801.09497,
  title  = {Resonance profiles of valley polarization in single-layer MoS$_2$ and MoSe$_2$},
  author = {Hans Tornatzky and Anne-Marie Kaulitz and Janina Maultzsch},
  journal= {arXiv preprint arXiv:1801.09497},
  year   = {2018}
}