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August 27, 2012Physical Review Letters211 citationsOpen Access

Finite-Size Scaling at the Jamming Transition

CGCarl P. GoodrichALAndrea J. LiuSNSidney R. Nagel

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Abstract

We present an analysis of finite-size effects in jammed packings of N soft, frictionless spheres at zero temperature. There is a 1/N correction to the discrete jump in the contact number at the transition so that jammed packings exist only above isostaticity. As a result, the canonical power-law scalings of the contact number and elastic moduli break down at low pressure. These quantities exhibit scaling collapse with a nontrivial scaling function, demonstrating that the jamming transition can be considered a phase transition. Scaling is achieved as a function of N in both two and three dimensions, indicating an upper critical dimension of 2.

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Cite This Study

Goodrich et al. (2012) studied this question.

synapsesocial.com/papers/6a0f39b304e2b0ba896cb4f7https://doi.org/10.1103/physrevlett.109.095704
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