论文标题

通过主动物质润湿固体表面

Wetting of a Solid Surface by Active Matter

论文作者

Neta, Pedro, Tasinkevych, Mykola, da Gama, Margarida Telo, Dias, Cristóvão

论文摘要

晶格模型用于研究平面表面的排斥活性颗粒。采用无排斥的动力学蒙特卡洛法来表征润湿行为。该模型预测了活动颗粒的迁移率诱导的相位分离,并确定了密集的液体样和稀释蒸气状稳态的大量共存。引入了一个“合奏”,具有不同数量的粒子,类似于平衡的大规范合奏。研究了固体表面和蒸气相之间液体膜的形成和生长。对于所有考虑的活动,吸附膜的厚度表现出不同的行为,因为该系统与蒸气侧共存,表明沿完整的共存曲线具有完整的润湿场景。

A lattice model is used to study repulsive active particles at a planar surface. A rejection-free Kinetic Monte Carlo method is employed to characterize the wetting behaviour. The model predicts a mobility induced phase separation of active particles, and the bulk coexistence of dense liquid-like and dilute vapour-like steady states is determined. An "ensemble", with a varying number of particles, analogous to a grand canonical ensemble in equilibrium, is introduced. The formation and growth of the liquid film between the solid surface and the vapour phase is investigated. For all of the activities considered, the thickness of the adsorbed film exhibits a diverging behaviour as the system is brought towards coexistence from the vapour side, suggesting a complete wetting scenario along the full coexistence curve.

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