过冷
放松(心理学)
凝聚态物理
波矢
材料科学
散射
化学物理
动态光散射
分子物理学
相(物质)
粒子(生态学)
物理
热力学
光学
纳米颗粒
纳米技术
心理学
社会心理学
海洋学
量子力学
地质学
作者
Beatrice Ruta,Simon Hechler,Nico Neuber,Davide Orsi,Luigi Cristofolini,Oliver Gross,Benedikt Bochtler,Maximilian Frey,Alexander Kuball,Sascha Sebastian Riegler,Moritz Stolpe,Zach Evenson,Christian Gutt,Fabian Westermeier,Ralf Busch,Isabella Gallino
标识
DOI:10.1103/physrevlett.125.055701
摘要
We present a detailed investigation of the wave-vector dependence of collective atomic motion in Au_{49}Cu_{26.9}Si_{16.3}Ag_{5.5}Pd_{2.3} and Pd_{42.5}Cu_{27}Ni_{9.5}P_{21} supercooled liquids close to the glass transition temperature. Using x-ray photon correlation spectroscopy in a previously uncovered spatial range of only a few interatomic distances, we show that the microscopic structural relaxation process mimics the structure and presents a marked slowing down at the main average interparticle distance. This behavior is accompanied by dramatic changes in the shape of the intermediate scattering functions, which suggest the presence of large dynamical heterogeneities at length scales corresponding to a few particle diameters. A ballisticlike mechanism of particle motion seems to govern the structural relaxation of the two systems in the highly viscous phase, likely associated with hopping of caged particles in agreement with theoretical studies.
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