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Assembly of body-centered cubic crystals in hard spheres

机译:在硬球体中以身体为中心的立方晶体的组装

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We investigate the crystallization of monodisperse hard spheres confined by two square patterned substrates (possessing the basic character of the body-centered cubic (bcc) crystal structure) at varying substrate separations via molecular dynamics simulation. Through slowly increasing the density of the system, we find that crystallization under the influence of square patterned substrates can set in at lower densities compared with the homogeneous crystallization. As the substrate separation decreases, the density, where crystallization occurs (i.e., pressure drops), becomes small. Moreover, two distinct regimes are identified in the plane of bcc particle fraction and density for the separation range investigated. For large substrate separations, the bcc particle fraction displays a local maximum as the density is increased, and the resulting formed crystals have a polycrystalline structure. However, and more importantly, another situation emerges for small substrate separations: the capillary effects (stemming from the presence of two substrates) overwhelm the bulk driving forces (stemming from the spontaneous thermal fluctuations in the bulk) during the densification, eventually resulting in the formation of a defect-free bcc crystal (unstable with respect to the bulk hard-sphere crystals) by using two square patterned substrates.
机译:我们通过分子动力学模拟研究了由两个方形图案化基板(具有体心立方(bcc)晶体结构的基本特征)所约束的单分散硬球在不同基板间距下的结晶。通过缓慢增加系统的密度,我们发现,与均匀结晶相比,在方形图案化基材的影响下结晶可以较低的密度进行。随着衬底间距的减小,发生结晶(即,压降)的密度变小。此外,对于所研究的分离范围,在密件抄送颗粒分数和密度平面中确定了两种不同的方案。对于较大的基质分离,随着密度的增加,密件抄送粒子分数显示出局部最大值,并且所形成的晶体具有多晶结构。但是,更重要的是,对于较小的基质分离,出现了另一种情况:在致密化过程中,毛细管效应(由于存在两种基质而产生的堵塞)压倒了总体驱动力(由于本体中的自然热波动而引起的堵塞),最终导致了通过使用两个正方形的图案化基板形成无缺陷的bcc晶体(相对于整体硬球晶体不稳定)。

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