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Time correlation functions of simple liquids: A new insight on the underlying dynamical processes.

Giovanni GarberoglioRenzo VallauriUbaldo Bafile
Published in: The Journal of chemical physics (2018)
Extensive molecular dynamics simulations of liquid sodium have been carried out to evaluate correlation functions of several dynamical quantities. We report the results of a novel analysis of the longitudinal and transverse correlation functions obtained by evaluating directly their self- and distinct contributions at different wavevectors k. It is easily recognized that the self-contribution remains close to its k → 0 limit, which turns out to be exactly the autocorrelation function of the single particle velocity. The wavevector dependence of the longitudinal and transverse spectra and their self- and distinct parts is also presented. By making use of the decomposition of the velocity autocorrelation spectrum in terms of longitudinal and transverse parts, our analysis is able to recognize the effect of different dynamical processes in different frequency ranges.
Keyphrases
  • molecular dynamics simulations
  • density functional theory
  • cross sectional
  • blood flow
  • molecular docking
  • molecular dynamics
  • ionic liquid