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Size distribution and growth rate of crystal nuclei near critical undercooling in small volumes

机译:小批量临界过冷附近晶体核的尺寸分布及生长速率

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Kinetic equations are numerically solved within standard nucleation model to determine the size distribution of nuclei in small volumes near critical undercooling. Critical undercooling, when first nuclei are detected within the system, depends on the droplet volume. The size distribution of nuclei reaches the stationary value after some time delay and decreases with nucleus size. Only a certain maximum size of nuclei is reached in small volumes near critical undercooling. As a model system, we selected recently studied nucleation in Ni droplet [J. Bokeloh et al., Phys. Rev. Let. 107 (2011) 145701] due to available experimental and simulation data. However, using these data for sample masses from 23 μg up to 63 mg (corresponding to experiments) leads to the size distribution of nuclei, when no critical nuclei in Ni droplet are formed (the number of critical nuclei < 1). If one takes into account the size dependence of the interfacial energy, the size distribution of nuclei increases to reasonable values. In lower volumes (V ≤10~(-9) m~3) nucleus size reaches some maximum extreme size, which quickly increases with undercooling. Supercritical clusters continue their growth only if the number of critical nuclei is sufficiently high.
机译:动力学方程在标准成核模型中进行了数值求解,以确定小体积零临时过冷核细胞核的尺寸分布。临界过冷,当在系统内检测到第一节核时,取决于液滴体积。核的尺寸分布在一段时间延迟和用核尺寸减少后达到静止值。在临界过冷附近的小卷中仅达到一定的最大核尺寸。作为模型系统,我们最近选择了Ni液滴中的成核[J. Bokeloh等人。,phy。 rev.让。 107(2011)145701]由于可用的实验和仿真数据。然而,当形成Ni液滴中没有关键核(关键核的数量<1)时,使用从23μg的样品质量的样品质量(对应于实验)的样本质量的尺寸分布导致核的尺寸分布(关键核的数量<1)。如果考虑到界面能量的尺寸依赖性,则核的尺寸分布增加到合理的值。在较低的体积(V≤10〜(-9)m〜3)核尺寸达到一些最大的极端尺寸,这很快随着过冷增加。仅当关键核的数量足够高时,超临界群体才能延续其生长。

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