首页|Universal basis underlying temperature,pressure and size induced dynamical evolution in metallic glass-forming liquids

Universal basis underlying temperature,pressure and size induced dynamical evolution in metallic glass-forming liquids

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The dramatic temperature-dependence of liquids dynamics has attracted considerable scientific interests and efforts in the past decades,but the physics of which remains elusive.In addition to temperature,some other parameters,such as pressure,loading and size,can also tune the liquid dynamics and induce glass transition,which makes the situation more complicated.Here,we performed molecular dynamics simulations for Ni50Zr50 bulk liquid and nanodroplet to study the dynamics evolution in the complex multivariate phase space,especially along the isotherm with the change of pressure or droplet size.It is found that the short-time Debye-Waller factor universally determines the long-time relaxation dynamics no matter how the temperature,pressure or size changes.The basic correlation even holds at the local atomic scale.This finding provides general understanding of the microscopic mechanism of dynamic arrest and dynamic heterogeneity.

metallic glass-forming liquidsstructure relaxationdynamical heterogeneityDebye-Waller factor

张华平、范蓓蓓、吴佳琦、李茂枝

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Department of Physics,Beijing Key Laboratory of Opto-electronic Functional Materials & Micro-nano Devices,Renmin University of China,Beijing 100872,China

Songshan Lake Materials Laboratory,Dongguan 523808,China

Key Laboratory of Quantum State Construction and Manipulation(Ministry of Education),Renmin University of China,Beijing 100872,China

National Natural Science Foundation of ChinaPhysical Laboratory of High Performance Computing at Renmin University of China

52031016

2024

中国物理B(英文版)
中国物理学会和中国科学院物理研究所

中国物理B(英文版)

CSTPCDEI
影响因子:0.995
ISSN:1674-1056
年,卷(期):2024.33(1)
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