ITMO University, Kronverkskiy pr. 49, 197101 Saint Petersburg, Russia.
Phys Rev E. 2019 Jan;99(1-1):012105. doi: 10.1103/PhysRevE.99.012105.
We study theoretically the size distributions of nanoparticles (surface islands, droplets, molecular chains, and semiconductor nanowires) which grow without decay and with arbitrary size and time-dependent growth rates. Using a special transformation of variables, the analytic Green's function is obtained in the form of a Gaussian the variance of which is determined by the size dependence of the growth rate k(s). In the case of the power-law growth rates k(s)=(a+s)^{α}, the explicit formulas for the expectation and variance are given that contain earlier results in the limiting regimes. In the case of heterogeneous nucleation in a closed system, by convoluting Green's function with the exponential nucleation rate, we find an analytic size distribution which takes into account a delay in forming the smallest dimer and shows how it affects the distribution shapes. The recently discovered sub-Poissonian narrowing of the size distribution by nucleation antibunching is also included in the treatment. We briefly consider the length distribution of vapor-liquid-solid nanowires in the context of the obtained results. Overall, simple analytic size distributions obtained here under rather general assumptions may be useful for understanding and modeling statistical properties of different growth systems.
我们从理论上研究了在无衰减和具有任意尺寸和随时间变化的生长速率的情况下生长的纳米粒子(表面岛、液滴、分子链和半导体纳米线)的尺寸分布。通过特殊的变量变换,得到了解析格林函数的形式为高斯分布,其方差由增长率 k(s) 的尺寸依赖性决定。在幂律增长率 k(s)=(a+s)^{α}的情况下,给出了期望和方差的显式公式,其中包含了极限情况下的早期结果。在封闭系统中的异质成核情况下,通过将格林函数与指数形成核速率卷积,我们找到了一个解析的尺寸分布,该分布考虑了形成最小二聚体的延迟,并展示了它如何影响分布形状。成核反聚束引起的最近发现的亚泊松分布宽度变窄也包含在处理中。我们简要考虑了在获得的结果的背景下蒸气-液体-固体纳米线的长度分布。总的来说,在相当普遍的假设下,这里获得的简单解析尺寸分布可能有助于理解和模拟不同生长系统的统计性质。