Maggi Claudio, Paoluzzi Matteo, Crisanti Andrea, Zaccarelli Emanuela, Gnan Nicoletta
NANOTEC-CNR, Institute of Nanotechnology, Soft and Living Matter Laboratory -Piazzale A. Moro 2, I-00185, Roma, Italy.
Departamento de Fìsica de la Matèria Condensada, Universitat de Barcelona, C. MartìFranquès 1, 08028 Barcelona, Spain.
Soft Matter. 2021 Apr 14;17(14):3807-3812. doi: 10.1039/d0sm02162h. Epub 2021 Mar 1.
We perform large-scale computer simulations of an off-lattice two-dimensional model of active particles undergoing a motility-induced phase separation (MIPS) to investigate the system's critical behaviour close to the critical point of the MIPS curve. By sampling steady-state configurations for large system sizes and performing finite size scaling analysis we provide exhaustive evidence that the critical behaviour of this active system belongs to the Ising universality class. In addition to the scaling observables that are also typical of passive systems, we study the critical behaviour of the kinetic temperature difference between the two active phases. This quantity, which is always zero in equilibrium, displays instead a critical behavior in the active system which is well described by the same exponent of the order parameter in agreement with mean-field theory.
我们对经历运动诱导相分离(MIPS)的非晶格二维活性粒子模型进行了大规模计算机模拟,以研究该系统在接近MIPS曲线临界点时的临界行为。通过对大系统规模的稳态构型进行采样并进行有限尺寸标度分析,我们提供了详尽的证据,表明这个活性系统的临界行为属于伊辛普适类。除了被动系统中也典型存在的标度可观测量外,我们还研究了两个活性相之间的动力学温度差的临界行为。这个量在平衡态时总是为零,而在活性系统中却表现出临界行为,并且与平均场理论一致,由序参量的相同指数很好地描述。