Centro de Física Teórica e Computacional, Faculdade de Ciências, Universidade de Lisboa, 1749-016 Lisboa, Portugal.
Departamento de Física, Faculdade de Ciências, Universidade de Lisboa, 1749-016 Lisboa, Portugal.
Philos Trans A Math Phys Eng Sci. 2021 Oct 18;379(2208):20200394. doi: 10.1098/rsta.2020.0394. Epub 2021 Aug 30.
Activity in nematics drives interfacial flows that lead to preferential alignment that is tangential or planar for extensile systems (pushers) and perpendicular or homeotropic for contractile ones (pullers). This alignment is known as active anchoring and has been reported for a number of systems and described using active nematic hydrodynamic theories. The latter are based on the one-elastic constant approximation, i.e. they assume elastic isotropy of the underlying passive nematic. Real nematics, however, have different elastic constants, which lead to interfacial anchoring. In this paper, we consider elastic anisotropy in multiphase and multicomponent hydrodynamic models of active nematics and investigate the competition between the interfacial alignment driven by the elastic anisotropy of the passive nematic and the active anchoring. We start by considering systems with translational invariance to analyse the alignment at flat interfaces and, then, consider two-dimensional systems and active nematic droplets. We investigate the competition of the two types of anchoring over a wide range of the other parameters that characterize the system. The results of the simulations reveal that the active anchoring dominates except at very low activities, when the interfaces are static. In addition, we found that the elastic anisotropy does not affect the dynamics but changes the active length that becomes anisotropic. This article is part of the theme issue 'Progress in mesoscale methods for fluid dynamics simulation'.
向列相的活性可以产生界面流,从而导致优先各向异性排列,对于伸展系统(推动器)是切线或平面的,对于收缩系统(拉动器)是垂直或平面内的。这种各向异性排列称为主动锚定,已经在许多系统中得到了报道,并使用主动向列流体动力学理论进行了描述。后者基于单弹性常数近似,即它们假设底层无源向列相的各向弹性是各向同性的。然而,实际的向列相具有不同的弹性常数,这导致了界面锚定。在本文中,我们考虑了主动向列的多相和多组分流体动力学模型中的各向异性弹性,并研究了由无源向列相的弹性各向异性驱动的界面排列与主动锚定之间的竞争。我们首先考虑具有平移不变性的系统,以分析平面界面上的排列,然后考虑二维系统和主动向列液滴。我们在广泛的其他参数范围内研究了两种锚定类型的竞争,这些参数可以用来表征系统。模拟结果表明,除了在界面静止且活性非常低的情况下,主动锚定占主导地位。此外,我们发现弹性各向异性不会影响动力学,但会改变各向异性的活性长度。本文是“流体动力学模拟的介观方法进展”专题的一部分。