Theoretische Physik II, Physikalisches Institut, Universität Bayreuth, D-95440 Bayreuth, Germany.
Phys Rev Lett. 2018 Aug 31;121(9):098002. doi: 10.1103/PhysRevLett.121.098002.
We identify a structural one-body force field that sustains spatial inhomogeneities in nonequilibrium overdamped Brownian many-body systems. The structural force is perpendicular to the local flow direction, it is free of viscous dissipation, it is microscopically resolved in both space and time, and it can stabilize density gradients. From the time evolution in the exact (Smoluchowski) low-density limit, Brownian dynamics simulations, and a novel power functional approximation, we obtain a quantitative understanding of viscous and structural forces, including memory and shear migration.
我们确定了一种结构单一体力场,该场维持非平衡过阻尼布朗多体系统中的空间非均匀性。结构力垂直于局部流动方向,无粘性耗散,在空间和时间上都可微分辨,可稳定密度梯度。通过精确(斯莫鲁霍夫斯基)低密极限下的时间演化、布朗动力学模拟和一种新的幂泛函近似,我们获得了对粘性力和结构力的定量理解,包括记忆和剪切迁移。