Univ Lyon, Ens de Lyon, Univ Claude Bernard, CNRS, Laboratoire de Physique, F-69342 Lyon, France.
Nat Commun. 2017 Jun 28;8:15969. doi: 10.1038/ncomms15969.
Ensembles of driven or motile bodies moving along opposite directions are generically reported to self-organize into strongly anisotropic lanes. Here, building on a minimal model of self-propelled bodies targeting opposite directions, we first evidence a critical phase transition between a mingled state and a phase-separated lane state specific to active particles. We then demonstrate that the mingled state displays algebraic structural correlations also found in driven binary mixtures. Finally, constructing a hydrodynamic theory, we single out the physical mechanisms responsible for these universal long-range correlations typical of ensembles of oppositely moving bodies.
沿相反方向运动的驱动或游动体的集合通常会自行组织成强烈各向异性的通道。在这里,基于一个针对相反方向的自推进体的最小模型,我们首先证明了一个关键的相变,即混合状态和特定于活性粒子的分离相通道状态之间的相变。然后,我们证明混合状态显示了在驱动二元混合物中也发现的代数结构相关性。最后,构建一个流体力学理论,我们确定了这些普遍的长程相关性的物理机制,这些相关性是成对运动体集合的典型特征。