论文标题
宏观滚动系统中相变的扩散和速度相关性
Diffusion and velocity correlations of the phase transitions in a system of macroscopic rolling spheres
论文作者
论文摘要
我们研究由塑料球组成的空气灌溉颗粒单层 在金属网格上滚动。调整空气电流,使得球体永远不会松动接触 使用网格,使动力学可以被视为伪二维(或二维, 如果不考虑球体滚动的影响)。我们发现两个令人惊讶的连续 过渡,它们都显示两个共存阶段。此外,在所有情况下,我们都发现 共存的阶段显示出强大的能量非设备。在第一次过渡中,处于弱 Fludization是一种玻璃相,与流体样相无序的相交。在第二个过渡中, 六角形晶体与流体相共存。我们分析了这些两相系统的 每个阶段的特定扩散特性以及速度相关性。出奇, 我们在非常低的堆积分数中找到一个玻璃相,并且有多种颗粒状 温度。这两个阶段的特征也以强抗相关速度的特征 碰撞。因此,该准二维系统揭示了观察到的动力学阶段 具有特殊特性的过渡,与良好的预测行为截然不同 平衡的理论。
We study an air-fluidized granular monolayer, composed of plastic spheres which roll on a metallic grid. The air current is adjusted so that the spheres never loose contact with the grid, so that the dynamics may be regarded as pseudo two-dimensional (or two-dimensional, if the effects of sphere rolling are not taken into account). We find two surprising continuous transitions, both of them displaying two coexisting phases. Moreover, in all cases, we found the coexisting phases display strong energy non-equipartition. In the first transition, at weak fludization, a glassy phase coexists with a disordered fluid-like phase. In the second transition, a hexagonal crystal coexists with the fluid phase. We analyze, for these two-phase systems, the specific diffusive properties of each phase, as well as the velocity correlations. Surprisingly, we find a glass phase at very low packing fraction and for a wide range of granular temperatures. Both phases are characterized also by a strong anti-correlated velocities upon collision. Thus, the dynamics observed for this quasi two-dimensional system unveils phase transitions with peculiar properties, very different from the predicted behavior in well know theories for their equilibrium counterparts.