在合玻璃过渡过程中,旋转和转移的脱
John Geiger1, Niklas Grimm2, Matthias Fuchs2
1Fachbereich Chemie, Universität Konstanz, 78457 Konstanz, Germany.
The Journal of chemical physics
|July 3, 2024
概括
密集的粒子系统显示复杂的运动. 这项研究显示,随着密度的增加,转换粒子动力学显著放缓,而旋转运动基本上不受影响,为在玻璃过渡附近的粒子行为提供了新的见解.
科学领域:
- 体科学是一种体科学.
- 软物质物理学 软物质物理学
- 粒子动力学 粒子动力学
背景情况:
- 在密集的粒子系统中,旋转和转移运动的合是复杂的.
- 了解玻璃过渡附近的粒子动态对于材料科学至关重要.
研究的目的:
- 为了研究在密集的体分散中转移和旋转运动之间的复杂合.
- 提供对接近玻璃过渡的粒子结构和动态的见解.
主要方法:
- 使用共聚焦光显微镜,同时追踪转移和旋转粒子轨迹.
- 采用旋转探头粒子与两个光标记的核心来监测方向.
- 将实验数据与事件驱动的布朗模拟进行比较.
主要成果:
- 翻译动力学随着体积分数的增加而显著减速.
- 旋转动力学表现出最小的变化与增加的体积分数.
- 实验数据显示与模拟有很强的一致性,即使没有远场水力动力相互作用.
结论:
- 转移和旋转动力学在玻璃过渡附近的密集的合体系统中脱.
- 模式合理论准确地描述了结构动力学,但表明较小粒子扩散的脱.
- 在模拟玻璃状态中的切削应力相关性不受旋转运动的影响.
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