Vafa Farzan
Center of Mathematical Sciences and Applications, Harvard University, Cambridge, MA 02138, USA.
Soft Matter. 2022 Nov 2;18(42):8087-8097. doi: 10.1039/d2sm00830k.
Topological defects play a key role in two-dimensional active nematics, and a transient role in two-dimensional active polar fluids. Using a variational method, we study both the transient and long-time behavior of defects in two-dimensional active polar fluids in the limit of strong order and overdamped, compressible flow, and compare the defect dynamics with the corresponding active nematics model studied recently. One result is non-central interactions between defect pairs for active polar fluids, and by extending our analysis to allow orientation dynamics of defects, we find that the orientation of +1 defects, unlike that of ±1/2 defects in active nematics, is not locked to defect positions and relaxes to asters. Moreover, using a scaling argument, we explain the transient feature of active polar defects and show that in the steady state, active polar fluids are either devoid of defects or consist of a single aster. We argue that for contractile (extensile) active nematic systems, +1 vortices (asters) should emerge as bound states of a pair of +1/2 defects, which has been recently observed. Moreover, unlike the polar case, we show that for active nematics, a linear chain of equally spaced bound states of pairs of +1/2 defects can screen the activity term. A common feature in both models is the appearance of +1 defects (elementary in polar and composite in nematic) in the steady state.
拓扑缺陷在二维活性向列相中起着关键作用,而在二维活性极性流体中起瞬态作用。我们使用变分方法,研究了在强有序和过阻尼、可压缩流极限下二维活性极性流体中缺陷的瞬态和长时间行为,并将缺陷动力学与最近研究的相应活性向列相模型进行了比较。一个结果是活性极性流体中缺陷对之间存在非中心相互作用,通过扩展我们的分析以允许缺陷的取向动力学,我们发现与活性向列相中±1/2缺陷不同,+1缺陷的取向并不锁定在缺陷位置,而是弛豫到星状体。此外,通过标度论证,我们解释了活性极性缺陷的瞬态特征,并表明在稳态下,活性极性流体要么没有缺陷,要么由单个星状体组成。我们认为,对于收缩(拉伸)活性向列相系统,+1涡旋(星状体)应作为一对+1/2缺陷的束缚态出现,这一点最近已被观察到。此外,与极性情况不同,我们表明对于活性向列相,+1/2缺陷对的等间距束缚态的线性链可以屏蔽活性项。两个模型的一个共同特征是在稳态下出现+1缺陷(在极性中是基本的,在向列相中是复合的)。