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首页> 外文期刊>Physical review letters >Rotational Transport via Spontaneous Symmetry Breaking in Vibrated Disk Packings
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Rotational Transport via Spontaneous Symmetry Breaking in Vibrated Disk Packings

机译:通过在振动盘填料中通过自发对称旋转运输

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摘要

It is shown that vibrated packings of frictional disks self-organize cooperatively onto a rotational-transport state where the long-time angular velocity (omega) over bar (i) of each disk i is nonzero. Steady rotation is mediated by the spontaneous breaking of local reflection symmetry, arising when the cages in which disks are constrained by their neighbors acquire quenched disorder at large packing densities. Experiments and numerical simulation of this unexpected phenomenon show excellent agreement with each other, revealing two rotational phases as a function of excitation intensity, respectively, the low-drive (LDR) and the moderate-drive (MDR) regimes. In the LDR, interdisk contacts are persistent and rotation happens due to frictional sliding. In the MDR, disks bounce against each other, still forming a solid phase. In the LDR, simple energy-dissipation arguments are provided, that support the observed dependence of the typical rotational velocity on excitation strength.
机译:结果表明,摩擦磁盘的振动填料协同地自组织到旋转传输状态,其中每个磁盘的长时间角速度(ω)I非零。稳定旋转是通过局部反射对称的自发破碎介导的,当磁盘被其邻居受到邻近的笼子受到大包装密度的猝灭病症时产生的。这种意外现象的实验和数值模拟彼此具有很好的一致性,揭示了两个旋转阶段作为激发强度的函数,分别是低驱动力(LDR)和中等驱动(MDR)制度。在LDR中,interdisk触点是持久性的,并且由于摩擦滑动而发生旋转。在MDR中,磁盘彼此反射,仍然形成固相。在LDR中,提供了简单的能量耗散争论,其支持观察到典型的旋转速度对激发强度的依赖性。

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