中子自旋回波
放松(心理学)
动力学(音乐)
中子
Echo(通信协议)
核磁共振
材料科学
自旋(空气动力学)
化学物理
快速自旋回波
凝聚态物理
分子物理学
物理
核物理学
中子散射
磁共振成像
计算机科学
非弹性中子散射
声学
热力学
放射科
心理学
社会心理学
医学
计算机网络
作者
P. Luo,Yanqin Zhai,Péter Falus,Victoria García Sakai,Monika Hartl,Maiko Kofu,Kenji Nakajima,Antonio Faraone,Yang Zhang
标识
DOI:10.1038/s41467-022-29778-4
摘要
Abstract The relaxation behavior of glass formers exhibits spatial heterogeneity and dramatically changes upon cooling towards the glass transition. However, the underlying mechanisms of the dynamics at different microscopic length scales are not fully understood. Employing the recently developed wide-angle neutron spin-echo spectroscopy technique, we measured the Q -dependent coherent intermediate scattering function of a prototypical ionic glass former Ca 0.4 K 0.6 (NO 3 ) 1.4 , in the highly viscous liquid state. In contrast to the structure modulated dynamics for Q < 2.4 Å −1 , i.e., at and below the structure factor main peak, for Q > 2.4 Å −1 , beyond the first minimum above the structure factor main peak, the stretching exponent exhibits no temperature dependence and concomitantly the relaxation time shows smaller deviations from Arrhenius behavior. This finding indicates a change in the dominant relaxation mechanisms around a characteristic length of 2π/(2.4 Å −1 ) ≈ 2.6 Å, below which the relaxation process exhibits a temperature independent distribution and more Arrhenius-like behavior.
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