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Application of Edwards' statistical mechanics to high-dimensional jammed sphere packings

DukeSpace

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dc.contributor.author Charbonneau, Patrick en_US
dc.date.accessioned 2011-06-21T17:27:49Z
dc.date.available 2011-06-21T17:27:49Z
dc.date.issued 2010 en_US
dc.identifier.citation Jin,Yuliang;Charbonneau,Patrick;Meyer,Sam;Song,Chaoming;Zamponi,Francesco. 2010. Application of Edwards' statistical mechanics to high-dimensional jammed sphere packings. Physical Review E 82(5): 51126-51126. en_US
dc.identifier.issn 1539-3755 en_US
dc.identifier.uri http://hdl.handle.net/10161/4290
dc.description.abstract The isostatic jamming limit of frictionless spherical particles from Edwards' statistical mechanics [Song et al., Nature (London) 453, 629 (2008)] is generalized to arbitrary dimension d using a liquid-state description. The asymptotic high-dimensional behavior of the self-consistent relation is obtained by saddle-point evaluation and checked numerically. The resulting random close packing density scaling phi similar to d2(-d) is consistent with that of other approaches, such as replica theory and density-functional theory. The validity of various structural approximations is assessed by comparing with three-to six-dimensional isostatic packings obtained from simulations. These numerical results support a growing accuracy of the theoretical approach with dimension. The approach could thus serve as a starting point to obtain a geometrical understanding of the higher-order correlations present in jammed packings. en_US
dc.language.iso en_US en_US
dc.publisher AMER PHYSICAL SOC en_US
dc.relation.isversionof doi:10.1103/PhysRevE.82.051126 en_US
dc.subject random close packing en_US
dc.subject jamming transition en_US
dc.subject granular-materials en_US
dc.subject hard-spheres en_US
dc.subject density en_US
dc.subject systems en_US
dc.subject matter en_US
dc.subject physics, fluids & plasmas en_US
dc.subject physics, mathematical en_US
dc.title Application of Edwards' statistical mechanics to high-dimensional jammed sphere packings en_US
dc.title.alternative en_US
dc.description.version Version of Record en_US
duke.date.pubdate 2010-11-18 en_US
duke.description.endpage 51126 en_US
duke.description.issue 5 en_US
duke.description.startpage 51126 en_US
duke.description.volume 82 en_US
dc.relation.journal Physical Review E en_US

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