Microscopic dynamics of collective acoustic excitations in simple liquids

Fuente: arXiv
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Main Authors: Xu, Yixin, Xiang, Xing, Li, Zhigang, Zhou, Yanguang
Format: Preprint
Published: 2024
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author Xu, Yixin
Xiang, Xing
Li, Zhigang
Zhou, Yanguang
author_facet Xu, Yixin
Xiang, Xing
Li, Zhigang
Zhou, Yanguang
contents In this letter, we systematically investigate the microscopic dynamics of collective vibrational excitations in simple liquids. The thermodynamic states of simple liquids are unified to the mean atomic free volume. Our results show that longitudinal acoustic collective vibrational excitations are always observed in simple liquids even when the liquids are viscous, in which the atomic free volume is larger than the cross point of the corresponding mean propagation length and the atomic diffusion limit. This is because some long-wavelength longitudinal acoustic collective vibrational excitations can still propagate in viscous liquids. However, transverse acoustic collective vibrational excitations in viscous liquids become localized since both short- and long-wavelength transverse acoustic collective vibrational excitations have propagation lengths smaller than the atomic diffusion limit. Therefore, transverse acoustic collective vibrational excitations may not be detected in simple liquids. The propagation length of macroscopic elastic and shear waves which are the mechanical response of long-wavelength longitudinal and transverse collective vibrational excitations, respectively, is further calculated to quickly determine the propagation-to-localization crossover of collective vibrational excitations in simple liquids. Our findings here advance the understanding of the microscopic dynamics of collective vibrational excitations in simple liquids.
format Preprint
id arxiv_https___arxiv_org_abs_2410_19885
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Microscopic dynamics of collective acoustic excitations in simple liquids
Xu, Yixin
Xiang, Xing
Li, Zhigang
Zhou, Yanguang
Soft Condensed Matter
Materials Science
In this letter, we systematically investigate the microscopic dynamics of collective vibrational excitations in simple liquids. The thermodynamic states of simple liquids are unified to the mean atomic free volume. Our results show that longitudinal acoustic collective vibrational excitations are always observed in simple liquids even when the liquids are viscous, in which the atomic free volume is larger than the cross point of the corresponding mean propagation length and the atomic diffusion limit. This is because some long-wavelength longitudinal acoustic collective vibrational excitations can still propagate in viscous liquids. However, transverse acoustic collective vibrational excitations in viscous liquids become localized since both short- and long-wavelength transverse acoustic collective vibrational excitations have propagation lengths smaller than the atomic diffusion limit. Therefore, transverse acoustic collective vibrational excitations may not be detected in simple liquids. The propagation length of macroscopic elastic and shear waves which are the mechanical response of long-wavelength longitudinal and transverse collective vibrational excitations, respectively, is further calculated to quickly determine the propagation-to-localization crossover of collective vibrational excitations in simple liquids. Our findings here advance the understanding of the microscopic dynamics of collective vibrational excitations in simple liquids.
title Microscopic dynamics of collective acoustic excitations in simple liquids
topic Soft Condensed Matter
Materials Science
url https://arxiv.org/abs/2410.19885