论文标题
MIPS界面的固有结构透视图
Intrinsic structure perspective for MIPS interfaces in two dimensional systems of Active Brownian Particles
论文作者
论文摘要
活性布朗颗粒(ABP)的悬浮液在平均密度和活性强度范围内会引起运动性相位分离(MIP)[1],即使没有明确的吸引力。从界面上的总力中报道了机械表面张力的负值,而界面线的稳定波动将解释为毛细管表面张力阳性[2],而在平衡液体表面中,这两个幅度相等。我们在这里介绍了2D-ABP界面的分析,该界面的内在密度和力曲线以粒子距离与瞬时界面线的距离进行了计算。我们的结果从界面附近的颗粒上的随机活性力的局部整流中提供了对MIP的起源的新见解。正如它指出的那样,这种作用起到了在整个界面上产生压力梯度的外部电势[3],因此不能将MIP的机械表面张力描述为平衡相共存的阶段。但是我们的分析表明,大多数效果来自MIPS界面的致密(内部)紧密笼子颗粒,而不是来自外侧的自由移动颗粒,而外侧的自由移动颗粒与致密簇相撞。此外,随着活性力的强度降低,在致密平板处的六角阶参数的衰减与MIP的末端之间出现了明显的相关性。我们测试的是,使用MIPS所需的强大活性力,对于纯粹排斥的ABP,界面结构和性能非常相似(WCA-LJ模型以最小为最小的WCA-LJ模型),并且当相互作用包括一系列LJ吸引力时。
Suspensions of Active Brownian Particles (ABP) undergo motility induced phase separation (MIPS) over a wide range of mean density and activity strength [1], even in the absence of an explicit attraction. Negative values of the mechanical surface tension have been reported, from the total forces across the interface, while the stable fluctuations of the interfacial line would be interpreted as a positive capillary surface tension [2], while in equilibrium liquid surfaces these two magnitudes are equal. We present here the analysis of 2D-ABP interfaces in terms of the intrinsic density and force profiles, calculated with the particle distance to the instantaneous interfacial line. Our results provide a new insight in the origin of the MIPS from the local rectification of the random active force on the particles near the interface. As it had been pointed, that effect acts as an external potential [3] that produces a pressure gradient across the interface, so that the mechanical surface tension of the MIPS cannot be described as that of equilibrium coexisting phases; but our analysis shows that most of that effect comes from the tightly caged particles at the dense (inner) side of the MIPS interface, rather than from the free moving particles at the outer side that collide with the dense cluster. Moreover, a clear correlation appears between the decay of the hexatic order parameter at the dense slab and the end of the MIPS as the strength of the active force is lowered. We test that with the strong active forces required for MIPS, the interfacial structure and properties are very similar for ABP with purely repulsive (WCA-LJ model truncated at its minimum) and when the interaction includes a range of the LJ attractive force.