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具有有限形核势垒的动力学粗化相变。

Kinetic rougheninglike transition with finite nucleation barrier.

机构信息

Center for Nonlinear Phenomena and Complex Systems CP 231, Université Libre de Bruxelles, Blvd. du Triomphe, 1050 Brussels, Belgium.

出版信息

J Chem Phys. 2010 Jan 21;132(3):035102. doi: 10.1063/1.3294561.

Abstract

Recent observations of the growth of protein crystals have identified two different growth regimes. At low supersaturation, the surface of the crystal is smooth and increasing in size due to the nucleation of steps at defects and the subsequent growth of the steps. At high supersaturation, nucleation occurs at many places simultaneously, the crystal surface becomes rough, and the growth velocity increases more rapidly with increasing supersaturation than in the smooth regime. Kinetic roughening transitions are typically assumed to be due to the vanishing of the barrier for two-dimension nucleation on the surface of the crystal. We show here, by means of both analytic mean-field models and kinetic Monte Carlo simulations, that a transition between different growth modes reminiscent of kinetic roughening can also arise as a kinetic effect occurring at finite nucleation barriers.

摘要

最近对蛋白质晶体生长的观察发现了两种不同的生长状态。在低过饱和度下,晶体表面由于缺陷处的台阶成核以及随后的台阶生长而变得平滑并逐渐增大。在高过饱和度下,成核同时发生在许多地方,晶体表面变得粗糙,生长速度随过饱和度的增加比在平滑状态下更快。通常认为动力学粗化转变是由于晶体表面二维成核的势垒消失所致。我们通过解析平均场模型和动力学蒙特卡罗模拟表明,在有限的成核势垒下发生的动力学效应也可能导致类似动力学粗化的不同生长模式之间的转变。

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