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Disappearance of stacking fault in colloidal crystals under gravity

机译:重力作用下胶体晶体堆垛层错的消失

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After reviewing a previous work on the disappearance of a stacking fault in the hard-sphere (HS) system confined between the top and bottom flat walls under gravity, we present results of a Monte Carlo (MC) simulation of HSs confined between the top flat wall and the bottom square patterned wall under gravity. In MC simulations of HSs between flat walls we observed disappearance of an intrinsic stacking fault through the glide of the Shockley partial dislocation in fee (001) stacking forced by the stress from a small simulation box. The artifact that the driving force for the fee (001) growth was the stress from the simulation box has been circumvented; the stress realizing the fee (001) stacking has been replaced by that from square pattern on the bottom wall. Defect disappearance has also been observed for the square patterned bottom wall case.
机译:在回顾了有关重力限制在顶壁和底壁之间的硬球(HS)系统中的堆积断层消失的先前工作之后,我们提出了顶壁之间的HS的蒙特卡罗(MC)模拟结果墙和底部正方形图案墙在重力作用下。在平坦壁之间的HS的MC模拟中,我们观察到,由于小模拟盒施加的应力而导致的费用(001)堆垛中的Shockley部分错位的滑行,使固有的堆垛层错消失了。规避了费用(001)增长的驱动力是来自模拟盒的压力的伪影;底部的正方形图案替代了实现费用(001)堆叠的压力。对于正方形图案底壁盒,也观察到了缺陷消失。

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