Bhattacharyya Saraswat, Yeomans Julia M
Rudolf Peierls Centre for Theoretical Physics, Parks Road, <a href="https://ror.org/052gg0110">University of Oxford</a>, Oxford OX1 3PU, United Kingdom.
Phys Rev E. 2024 Aug;110(2-1):024607. doi: 10.1103/PhysRevE.110.024607.
We use a continuum, two-fluid approach to study a mixture of two active nematic fluids. Even in the absence of thermodynamically driven ordering, for mixtures of different activities we observe turbulent microphase separation, where domains form and disintegrate chaotically in an active turbulent background. This is a weak effect if there is no elastic nematic alignment between the two fluid components, but is greatly enhanced in the presence of an elastic alignment or substrate friction. We interpret the results in terms of relative flows between the two species which result from active anchoring at concentration gradients. Our results may have relevance in interpreting epithelial cell sorting and the dynamics of multispecies bacterial colonies.
我们采用连续介质双流体方法来研究两种活性向列型流体的混合物。即使在没有热力学驱动排序的情况下,对于不同活性的混合物,我们也观察到了湍流微相分离,即在活性湍流背景下,畴会无序地形成和解体。如果两种流体组分之间不存在弹性向列排列,这是一种微弱的效应,但在存在弹性排列或基底摩擦的情况下会大大增强。我们根据两种物质之间的相对流动来解释结果,这种相对流动是由浓度梯度处的活性锚定引起的。我们的结果可能与解释上皮细胞分选和多物种细菌菌落的动力学有关。