User account menu

  • Log in
Home
Theoretical Spectroscopy Group

Main navigation

  • Home
  • People
    • Andrea Cucca
    • Christine Giorgetti
    • Francesco Sottile
    • Lucia Reining
    • Matteo Gatti
    • Valerie Veniard
    • Vitaly Gorelov
      • Fatema Mohamed
      • Kevin Leveque-Simon
      • Felana Andriambelaza
      • Maram Ali Ahmed Musa
      • Sarbajit Dutta
      • Marc Aichner
      • Carlos Rodriguez Perez
      • Jean Goossaert
      • Niklas Penner
    • Former Members
  • How to Reach Us
  • Research
    • Strong Correlation
    • Plasmons and EELS
    • Developments in TDDFT
    • Excitons and Exciton Dispersion
    • Larger Public
    • Low dimensional materials
    • Non-linear Optics
    • Scientific goals and main achievements
    • Theory Developments
    • Software
    • Publications
    • Thesis
  • Training
  • ETSF Events

Negative plasmon dispersion in 2 H -NbS 2 beyond the charge-density-wave interpretation

Breadcrumb

  • Home
  • Negative plasmon dispersion in 2 H -NbS 2 beyond the charge-density-wave interpretation
Author
Pierluigi Cudazzo
Eric Müller
Carsten Habenicht
Matteo Gatti
Helmuth Berger
Martin Knupfer
Angel Rubio
Simo Huotari
Keywords
paper
Abstract

We examine the experimental and theoretical electron-energy loss spectra in 2 H - $\#$$\#$IMG$\#$$\#$ [http://ej.iop.org/images/1367-2630/18/10/103050/njpaa44fbieqn1.gif] $\mathrmCu_0.2$ NbS 2 and find that the 1 eV plasmon in this material does not exhibit the regular positive quadratic plasmon dispersion that would be expected for a normal broad-parabolic-band system. Instead we find a nearly non-dispersing plasmon in the momentum-transfer range $\#$$\#$IMG$\#$$\#$ [http://ej.iop.org/images/1367-2630/18/10/103050/njpaa44fbieqn2.gif] $q\lt 0.35$ A -1 . We argue that for a stoichiometric pure 2 H -NbS 2 the dispersion relation is expected to have a negative slope as is the case for other transition-metal dichalcogenides. The presence of Cu impurities, required to stabilize the crystal growth, tends to shift the negative plasmon dispersion into a positive one, but the doping level in the current system is small enough to result in a nearly-non-dispersing plasmon. We conclude that a negative-slope plasmon dispersion is not connected with the existence of a charge-density-wave order in transition metal dichalcogenides.

Year of Publication
2016
Journal
New Journal of Physics
Volume
18
URL
http://stacks.iop.org/1367-2630/18/i=10/a=103050
Download citation
  • Google Scholar
  • BibTeX
  • RIS

Developed & Designed by Alaa Haddad. Customized by ETSF Palaiseau © 2025.