论文标题
晶格流体中的集体唤醒介导的相互作用:杂质障碍刺激的强局力波动的影响
Collective wake-mediated interactions in lattice fluids: Effects of strong local force fluctuations stimulated by impurity disorder
论文作者
论文摘要
中场(粒子唤醒)的扰动决定了粒子本身上的stokes拖动。此外,它会影响其他颗粒的运动,从而诱导它们之间的非平衡相关性。我们研究了引起的非平衡相关性和力,作用于暴露于气流的杂质的构成颗粒上。这种诱导的相关性表现出许多引人注目的特征,这些特征是由媒介中粒子束集体散射的特性确定的。集体散射的特征取决于束本身的结构,这与不均匀性的散射有关,即相关体积中颗粒数(散射器)的波动。这是众所周知的,例如,在光学方面,在我们最近的工作中已显示出气体散射[1]。特别是,随机的杂质簇经历比常规的杂种更强的拖动。集群的不均匀性还决定了群集内散射场的巨大局部波动的存在,这显示出[1]中的气流散射。反过来,这应该导致簇内部诱发梯度力的强烈局部波动,这可以决定其稳定性。此外,由于存在这种波动而导致的有效参数(穿透指数,有效扩散系数等)对群集的描述降低了。
The perturbation of a medium field (a particle wake) determines the Stokes drag on the particle itself. Besides, it affects the motion of other particles, inducing non-equilibrium correlations between them. We study the induced non-equilibrium correlations and forces, acting on constituent particles of the bunch or cluster of impurities exposed to a gas stream. Such induced correlations exhibit many striking features that are determined by the properties of particle bunch collective scattering in a medium. The characteristics of collective scattering are determined by the structure of the bunch itself, that is associated with scattering on inhomogeneities, i.e., on fluctuations of the number of particles (scatterers) in a correlation volume. This is well-known, e.g., in optics and have been shown for gas scattering in our recent work [1]. In particular, a random cluster of impurities experiences much stronger Stokes drag than a regular one. Inhomogeneity of the cluster also determines the presence of giant local fluctuations of the scattered field inside a cluster, that was shown for gas stream scattering in [1]. This, in turn, should lead to strong local fluctuations of induced gradient forces inside the cluster, which can determine its stability. Moreover, the description of a cluster in terms of effective parameters (penetration index, effective diffusion coefficient, etc.) brakes down due to the presence of such fluctuations.