论文标题
沮丧的轴承
Frustrated bearings
论文作者
论文摘要
在轴承状态下,接触球(二维磁盘)互相滚动而不会滑。在这里,我们通过在相对侧面施加两个不同的轴承状态并寻找最低能量消散的配置,从而挫败了接触球的系统。如果球体接触之间的耗散是粘性的(带有随机阻尼常数),则角动量会连续地从一个轴承状态变为另一个轴承状态。对于库仑摩擦(带有随机摩擦系数),在两个维度上,尖锐的线将两个轴承状态分开,我们表明该线对应于最小切割。然而,令人惊讶的是,在三个维度上,与两侧同步的中间轴承结构域在能量上比最小切割表面更有利。稳态而不是急剧切割,而是显示碎片结构。这种新型的最小耗散状态的特征是到达每个球体的无滑接触网络。这种情况变得可能是可能的,因为在三个方面,轴承状态具有四个自由度。
In a bearing state, touching spheres (disks in two dimensions) roll on each other without slip. Here we frustrate a system of touching spheres by imposing two different bearing states on opposite sides and search for the configurations of lowest energy dissipation. If the dissipation between contacts of spheres is viscous (with random damping constants), the angular momentum continuously changes from one bearing state to the other. For Coulomb friction (with random friction coefficients) in two dimensions, a sharp line separates the two bearing states and we show that this line corresponds to the minimum cut. Astonishingly however, in three dimensions, intermediate bearing domains, that are not synchronized with either side, are energetically more favorable than the minimum-cut surface. Instead of a sharp cut, the steady state displays a fragmented structure. This novel type of state of minimum dissipation is characterized by a spanning network of slipless contacts that reaches every sphere. Such a situation becomes possible because in three dimensions bearing states have four degrees of freedom.