Lopez, Jorge Y Cao, L Y Schwarz, Jennifer (2013) Jamming graphs: A local approach to global mechanical rigidity. Physical Review E. 062130-1-062130-12. ISSN 2470-0053
Text
2013 Jamming Graphs.pdf Download (1MB) |
Resumen
We revisit the concept of minimal rigidity as applied to frictionless, repulsive soft sphere packings in two dimensions with the introduction of the jamming graph. Minimal rigidity is a purely combinatorial property encoded via Laman’s theorem in two dimensions. It constrains the global, average coordination number of the graph, for example. However, minimal rigidity does not address the geometry of local mechanical stability. The jamming graph contains both properties of global mechanical stability at the onset of jamming and local mechanical stability. We demonstrate how jamming graphs can be constructed using local moves via the Henneberg construction such that these graphs fall under the jurisdiction of correlated percolation. We then probe how jamming graphs destabilize, or become unjammed, by deleting a bond and computing the resulting rigid cluster distribution. We also study how the system restabilizes with the addition of new contacts and how a jamming graph with extra (redundant) contacts destabilizes. The latter endeavor allows us to probe a disk packing in the rigid phase and uncover a potentially new diverging length scale associated with the random deletion of contacts as compared to the study of cut-out (or frozen-in) subsystems.
Tipo de Elemento: | Artículo |
---|---|
Asunto: | Q Ciencias > QC Physics |
Division: | Facultad de Ciencias Exactas y Naturales > Programa de Física > Productividad |
Depósito de Usuario: | PhD Jorge Hernán López Melo |
Fecha Deposito: | 30 Aug 2023 16:20 |
Ultima Modificación: | 30 Aug 2023 16:20 |
URI: | http://sired.udenar.edu.co/id/eprint/8280 |
Ver Elemento |