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Ergodic-nonergodic transition in tapped granular systems: the role of persistent contacts

机译:拍击式颗粒系统中的遍历-非遍历过渡:持久性接触的作用

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摘要

Static granular packs have been studied in the last three decades in the frame of a modified equilibrium statistical mechanics that assumes ergodicity as a basic postulate. The canonical example on which this framework is tested consists in the series of static configurations visited by a granular column subjected to taps. By analyzing the response of a realistic model of grains, we demonstrate that volume and stress variables visit different regions of the phase space at low tap intensities in different realizations of the experiment. We show that the tap intensity beyond which sampling by tapping becomes ergodic coincides with the forcing necessary to break all particle-particle contacts during each tap. These results imply that the well-known "reversible" branch of tapped granular columns is only valid at relatively high tap intensities.
机译:在过去的三十年中,在以平衡论为基本假设的改良平衡统计力学框架内,对静态粒状填充物进行了研究。对该框架进行测试的典型示例包括一系列经受了抽头操作的粒状塔所访问的静态配置。通过分析一个现实的晶粒模型的响应,我们证明了在不同的实验实现中,体积和应力变量在低敲击强度下会访问相空间的不同区域。我们显示出敲击强度,超出该强度时,通过敲击采样将变为遍历遍历,这与在每次敲击期间打破所有粒子间的接触所必需的强迫相吻合。这些结果表明,众所周知的抽头颗粒柱的“可逆”分支仅在相对较高的抽头强度下才有效。

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