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Liquid-like atoms in dense-packed solid glasses

delete2022-08-15
delete63
PRE
AI
C
Chao Cheng Chang
H
Huaping Zhang
R
Rui Zhao
F
F. C. Li
P
P. Luo
李茂枝 cover
李茂枝 (M. Z. Li)
H
H. Y. Bai *
DOI:10.1038/s41563-022-01327-wdelete
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Abstract

Abstract

En 中文
Revealing the microscopic structural and dynamic pictures of glasses is a long-standing challenge for scientists(1,2). Extensive studies on the structure and relaxation dynamics of glasses have constructed the current classical picture(3-5): glasses consist of some 'soft zones' of loosely bound atoms embedded in a tightly bound atomic matrix. Recent experiments have found an additional fast process in the relaxation spectra(6-9), but the underlying physics of this process remains unclear. Here, combining extensive dynamic experiments and computer simulations, we reveal that this fast relaxation is associated with string-like diffusion of liquid-like atoms, which are inherited from the high-temperature liquids. Even at room temperature, some atoms in dense-packed metallic glasses can diffuse just as easily as they would in liquid states, with an experimentally determined viscosity as low as 10(7) Pa.s. This finding extends our current microscopic picture of glass solids and might help establish the dynamics-property relationship of glasses(4).
Keywords:
SHEAR MODULUS
RELAXATION
TRANSITION
STATES
WATER
ORDER
PART

Journal

Nature Materials cover
Nature Materials
IF:
38.5
Papers:
6.8K
Citations:
11.5W

Organization

C
chinese academy of sciences
Scholars:
56.5W
Papers: 44.9W
Citations: 704