Gardner-like crossover from variable to persistent force contacts in granular crystals.

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2022-11

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Abstract

We report experimental evidence of a Gardner-like crossover from variable to persistent force contacts in a two-dimensional bidisperse granular crystal by analyzing the variability of both particle positions and force networks formed under uniaxial compression. Starting from densities just above the freezing transition and for variable amounts of additional compression, we compare configurations to both their own initial state and to an ensemble of equivalent reinitialized states. This protocol shows that force contacts are largely undetermined when the density is below a Gardner-like crossover, after which they gradually transition to being persistent, being fully so only above the jamming point. We associate the disorder that underlies this effect with the size of the microscopic asperities of the photoelastic disks used, by analogy to other mechanisms that have been previously predicted theoretically.

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10.1103/physreve.106.054901

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Kool, Lars, Patrick Charbonneau and Karen E Daniels (2022). Gardner-like crossover from variable to persistent force contacts in granular crystals. Physical review. E, 106(5-1). p. 054901. 10.1103/physreve.106.054901 Retrieved from https://hdl.handle.net/10161/29308.

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Scholars@Duke

Charbonneau

Patrick Charbonneau

Professor of Chemistry

Professor Charbonneau studies soft matter. His work combines theory and simulation to understand the glass problem, protein crystallization, microphase formation, and colloidal assembly in external fields.


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