Paillusson Fabien
Departament de fisica fonamental, Universitat de Barcelona, 1 Marti i Franques, 08028, Barcelona, Spain.
Phys Rev E Stat Nonlin Soft Matter Phys. 2015 Jan;91(1):012204. doi: 10.1103/PhysRevE.91.012204. Epub 2015 Jan 29.
Devising a statistical mechanics framework for jammed granular materials is a challenging task as those systems do not share some important properties required to characterize them with statistical thermodynamics tools. In a recent paper [Asenjo et al. Phys. Rev. Lett. 112, 098002 (2014)], a new definition of a granular entropy, which puts the protocol used to generate the packings at its roots, has been proposed. Following up these results, it is shown that the protocol used in Asenjo et al. can be recast as a canonical ensemble with a particular value of the temperature. Signature of gaussianity for large system sizes strongly suggests an asymptotic equivalence with a corresponding microcanonical ensemble where jammed states with certain basin volumes are sampled uniformly. We argue that this microcanonical ensemble is not Edwards's microcanonical ensemble and generalize this argument to other protocols.
为堵塞的颗粒材料设计一个统计力学框架是一项具有挑战性的任务,因为这些系统不具备一些用统计热力学工具来表征它们所需的重要特性。在最近的一篇论文[阿森霍等人,《物理评论快报》112, 098002 (2014)]中,提出了一种颗粒熵的新定义,该定义将用于生成堆积的协议作为其基础。继这些结果之后,研究表明,阿森霍等人使用的协议可以被重塑为具有特定温度值的正则系综。对于大系统规模,高斯性的特征强烈表明与相应的微正则系综存在渐近等价性,在该微正则系综中,具有特定盆地体积的堵塞状态被均匀采样。我们认为这个微正则系综不是爱德华兹的微正则系综,并将这一论点推广到其他协议。