论文标题

活性结晶的相位晶体描述:弹性和非弹性碰撞

Phase-field crystal description of active crystallites: elastic and inelastic collisions

论文作者

Ophaus, Lukas, Kirchner, Johannes, Gurevich, Svetlana V., Thiele, Uwe

论文摘要

主动相位场晶体(APFC)模型结合了用于自螺旋体颗粒的墨水-TU理论的元素和描述液体对结晶相之间的过渡的经典相位晶体晶体(PFC)模型。在PFC模型的液晶共存区域中,结晶簇的形式存在于与均匀背景共存的局部状态。在足够强大的自我推进力量(或活动)下,它们开始行进。我们采用数值路径延续和直接时间模拟,首先研究一维系统的不同类型局部状态的存在区域。结果以活性和平均浓度跨越的参数平面的形态相图总结。然后,我们专注于研究其碰撞行为的旅行局部状态的相互作用。结果,我们区分了“弹性”和“非弹性”碰撞。在前者中,局部状态在碰撞后恢复其财产,而后者可能会歼灭或形成休息或旅行的状态。总之,我们描述了经典PFC模型中稳步旅行的局部状态的振荡和调制的局部状态。

The active Phase-Field-Crystal (aPFC) model combines elements of the Toner-Tu theory for self-propelled particles and the classical Phase-Field-Crystal (PFC) model that describes the transition between liquid to crystalline phases. In the liquid-crystal coexistence region of the PFC model, crystalline clusters exist in the form of localized states that coexist with the homogeneous background. At sufficiently strong self-propulsion strength (or activity) they start to travel. We employ numerical path continuation and direct time simulations to first investigate the existence regions of different types of localized states for a one-dimensional system. The results are summarized in morphological phase diagrams in the parameter plane spanned by activity and mean concentration. Then we focus on the interaction of traveling localized states studying their collision behavior. As a result we distinguish 'elastic' and 'inelastic' collisions. In the former, localized states recover their properties after a collision while in the latter they may annihilate or form resting or traveling bound states. In passing, we describe oscillating and modulated traveling localized states that have as the steadily traveling localized states no counterpart in the classical PFC model.

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