Sampat Pranay Bimal, Mishra Shradha
Department of Physics, Indian Institute of Technology (BHU), Varanasi, U.P. - 221005 India.
Phys Rev E. 2021 Aug;104(2-1):024130. doi: 10.1103/PhysRevE.104.024130.
Swimming bacteria in passive nematics in the form of lyotropic liquid crystals are defined as a new class of active matter known as living liquid crystals in recent studies. It has also been shown that liquid crystal solutions are promising candidates for trapping and detecting bacteria. We ask the question, can a similar class of matter be designed for background nematics which are also active? Hence, we developed a minimal model for the mixture of polar particles in active nematics. It is found that the active nematics in such a mixture are highly sensitive to the presence of polar particles and show the formation of large scale higher order structures for a relatively low polar particle density. Upon increasing the density of polar particles, different phases of active nematics are found and it is observed that the system shows two phase transitions. The first phase transition is a first order transition from quasi-long-ranged ordered active nematics to disordered active nematics with larger scale structures. On further increasing density of polar particles, the system transitions to a third phase, where polar particles form large, mutually aligned clusters. These clusters sweep the whole system and enforce local order in the nematics. The current study can be helpful for detecting the presence of very low densities of polar swimmers in active nematics and can be used to design and control different structures in active nematics.
在近期的研究中,以溶致液晶形式存在于被动向列相中的游动细菌被定义为一类新的活性物质,即所谓的活性液晶。研究还表明,液晶溶液有望用于捕获和检测细菌。我们提出一个问题:对于同样具有活性的背景向列相,能否设计出类似的一类物质?因此,我们为活性向列相中极性粒子的混合物建立了一个极简模型。研究发现,这种混合物中的活性向列相对极性粒子的存在高度敏感,并且在相对较低的极性粒子密度下就会形成大规模的高阶结构。随着极性粒子密度的增加,会发现活性向列相的不同相态,并且观察到系统呈现出两个相变。第一个相变是从准长程有序的活性向列相到具有更大尺度结构的无序活性向列相的一级相变。进一步增加极性粒子的密度,系统会转变到第三相,此时极性粒子形成大的、相互排列的簇。这些簇扫过整个系统并在向列相中强制形成局部有序。当前的研究有助于检测活性向列相中极低密度极性游动体的存在,并且可用于设计和控制活性向列相中的不同结构。