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Complex force network in marginally and deeply jammed solids
Affiliation:School of Engineering Science, University of Science and Technology of China, Hefei 230026, China
Abstract:This paper studies the force network properties of marginally and deeply jammed packings of frictionless soft particles from the perspective of complex network theory.We generate zero-temperature granular packings at different pressures by minimizing the inter-particle potential energy.The force networks are constructed as nodes representing particles and links representing normal forces between the particles.Deeply jammed solids show remarkably different behavior from marginally jammed solids in their degree distribution,strength distribution,degree correlation,and clustering coefficient.Bimodal and multi-modal distributions emerge when the system enters the deep jamming region.The results also show that small and large particles can show different correlation behavior in this simple system.
Keywords:jamming  complex networks  amorphous solids
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