Caussin Jean-Baptiste, Bartolo Denis
Laboratoire de Physique de l'École Normale Supérieure de Lyon, Université de Lyon, 69007, Lyon, France,
Eur Phys J E Soft Matter. 2014 Jun;37(6):13. doi: 10.1140/epje/i2014-14055-8. Epub 2014 Jun 27.
We classify the interactions between self-propelled particles moving at a constant speed from symmetry considerations. We establish a systematic expansion for the two-body forces in the spirit of a multipolar expansion. This formulation makes it possible to rationalize most of the models introduced so far within a common framework. We distinguish between three classes of physical interactions: i) potential forces, ii) inelastic collisions and iii) non-reciprocal interactions involving polar or nematic alignment with an induced field. This framework provides simple design rules for the modeling and the fabrication of self-propelled bodies interacting via physical interactions. A class of possible interactions that should yield new phases of active matter is highlighted.
我们从对称性考虑出发,对以恒定速度移动的自驱动粒子之间的相互作用进行分类。我们本着多极展开的精神,为两体力建立了系统的展开式。这种表述方式使得在一个通用框架内将迄今为止引入的大多数模型合理化成为可能。我们区分了三类物理相互作用:i)势能力,ii)非弹性碰撞,以及iii)涉及与感应场的极性或向列排列的非互易相互作用。该框架为通过物理相互作用相互作用的自驱动体的建模和制造提供了简单的设计规则。突出了一类可能产生活性物质新相的相互作用。