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September 23, 2025Physical review. B./Physical review. B0 citationsOpen Access

Phonon-mode-specific modulation of electronic states in molybdenum dioxide

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FBFlorence BurriMHMarko HollmEVErik W. de Vos

Key Points

  • Distinct fingerprints of coherent phonon modes were observed, with frequencies at 6 and 11 THz.
  • The energy-dependent contrast is primarily governed by the modification of the projected density of states.
  • Observational analysis using transient absorption spectroscopy combined with density functional theory calculations was conducted.
  • These findings underscore the significant role of lattice dynamics in altering the ultrafast electronic response.

Abstract

Near-infrared pump and extreme ultraviolet probe transient absorption spectroscopy is employed to unravel the phonon-mode-specific modifications of electronic states near the Fermi energy in molybdenum dioxide. We observe distinct fingerprints of two coherent phonon modes at a frequency of 6 and 11THz which differ vastly in their energy-dependent modulations of the electronic response. By combining our measurements with density functional theory calculations, we show that the measured energy-dependent contrast between the phonon modes is primarily governed by the modification of the projected density of states. These findings highlight the pivotal role of lattice dynamics in the ultrafast electronic response.

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Cite This Study

Burri et al. (2025) studied this question.

synapsesocial.com/papers/68d4759931b076d99fa6d993https://doi.org/10.1103/9zlm-bqbn
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