Cheng Xiang
Department of Physics, The University of Chicago, James Franck Institute, Chicago, Illinois 60637, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2010 Mar;81(3 Pt 1):031301. doi: 10.1103/PhysRevE.81.031301. Epub 2010 Mar 9.
We experimentally investigate jamming in a quasi-two-dimensional granular system of automatically swelling particles and show that a maximum in the height of the first peak of the pair correlation function is a structural signature of the jamming transition at zero temperature. The same signature is also found in the second peak of the pair correlation function, but not in the third peak, reflecting the underlying singularity of jamming transition. We also study the development of clusters in this system. A static length scale extracted from the cluster structure reaches the size of the system when the system approaches the jamming point. Finally, we show that in a highly inhomogeneous system, friction causes the system to jam in series of steps. In this case, jamming may be obtained through successive buckling of force chains.
我们通过实验研究了自动膨胀颗粒的准二维颗粒系统中的堵塞现象,并表明对关联函数第一峰高度的最大值是零温下堵塞转变的结构特征。在对关联函数的第二峰中也发现了相同的特征,但在第三峰中未发现,这反映了堵塞转变的潜在奇异性。我们还研究了该系统中团簇的发展。从团簇结构中提取的静态长度尺度在系统接近堵塞点时达到系统大小。最后,我们表明在高度不均匀的系统中,摩擦力会导致系统分阶段堵塞。在这种情况下,堵塞可能通过力链的连续屈曲来实现。