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The boson peak in silicate glasses: insight from molecular dynamics

  • Ahmed El Hamdaoui
  • , El Mehdi Ghardi
  • , Achraf Atila
  • , Hicham Jabraoui
  • , Michael Badawi
  • , Abdellatif Hasnaoui
  • , Said Ouaskit
  • University Hassan II of Casablanca
  • Saarland University
  • Université Paris-Saclay
  • Université de Lorraine
  • Sultan Moulay Slimane University of Beni Mellal

Research output: Contribution to journalArticlepeer-review

Abstract

In the low-frequency regime, ≈1 THz, glasses show an anomalous excess in their vibrational density of states called the boson peak (BP). The origin of BP has been a subject of debate since its first discovery a few decades ago. Although BP has been the focus of numerous studies, no conclusive answers have been found about its origins, which remained elusive to date. Here, we present results based on molecular dynamics of several binary and ternary silicate glasses with different network intermediates and modifier oxides. The vibrational density of states and the BP are reported for all the studied glasses. Their correlation with the elastic constant , structural, and dynamical properties are extensively discussed in terms of Voronoi atomic volume and the vibrational mean square displacement of Q species specifically. We also question the classical classification of alkali oxides as modifiers, and we suggest that Li O plays the role of pseudo-intermediate oxide in lithium silicate glasses. This claim is supported by the effect of Li on various vibrational modes, and this effect differs from the other alkali metals. Furthermore, we demonstrate a correlation between the BP intensities and both the Voronoi volume of the Q and Q units and vibrational mean square displacements.
Original languageEnglish
Pages (from-to)31270-31280
Number of pages11
JournalPhysical chemistry chemical physics : PCCP
Volume25
Issue number45
DOIs
Publication statusPublished - 13 Nov 2023

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