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共存状态下微重力环境中硬球的结晶动力学:生长微晶之间的相互作用

Crystallization kinetics of hard spheres in microgravity in the coexistence regime: interactions between growing crystallites.

作者信息

Cheng Zhengdong, Chaikin P M, Zhu Jixiang, Russel W B, Meyer W V

机构信息

Department of Physics, Princeton University, Princeton, New Jersey 08540, USA.

出版信息

Phys Rev Lett. 2002 Jan 7;88(1):015501. doi: 10.1103/PhysRevLett.88.015501. Epub 2001 Dec 14.

Abstract

The hard sphere disorder-order transition serves as the paradigm for crystallization. However, measurements of the crystallization kinetics for colloidal hard spheres in the coexistence regime are incomplete for early times and are affected by sedimentation. We use time resolved Bragg light scattering to characterize crystal nucleation and growth in a microgravity environment on the space shuttle. In contrast to the classical picture of the nucleation and growth of isolated crystallites, we find substantial coarsening of growing crystallites. We also observe dendritic growth and face-centered cubic as the stable structure.

摘要

硬球无序-有序转变是结晶过程的范例。然而,对于共存体系中胶体硬球结晶动力学的测量,在早期阶段并不完整,且受到沉降的影响。我们利用时间分辨布拉格光散射来表征航天飞机微重力环境下的晶体成核和生长过程。与孤立微晶成核和生长的经典图像不同,我们发现生长中的微晶存在显著的粗化现象。我们还观察到树枝状生长以及面心立方作为稳定结构。

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