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Characteristics of Casimir-like Forces in Fluidized Granular Media

机译:流化粒状介质中Casimir样力的特征

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Fluctuations of the hydrodynamic fields in a driven granular fluid induce effective long-range forces between the immersed intruder particles. By means of numerical simulations and analytical calculations we verify that the Casimir-like force between two immobile intruders is attractive when the volume fraction of the granular fluid is sufficiently high. However, a crossover from attraction to repulsion occurs as the density decreases. The distance between the intruders, and the restitution coefficient are the other control parameters of the transition. We investigate the nonadditive property of the interactions, and clarify the impact of dimensionality and particle shape.
机译:从动粒状流体中的流体动力场的波动在浸没的入侵者颗粒之间引起有效的远程力。通过数值模拟和分析计算,我们确认当粒状流体的体积分数足够高时,两个固定入侵者之间的卡西米尔样力是有吸引力的。然而,随着密度降低而发生从吸引排斥的交叉。入侵者之间的距离和恢复系数是转换的另一个控制参数。我们研究了相互作用的非过度特性,并阐明了维度和颗粒形状的影响。

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