We investigate the response of dense hard sphere glasses to a shear strain in a wide range of pressures ranging from the glass transition to the infinite-pressure jamming point. The phase diagram in the densityshear strain plane is calculated analytically using the mean-field infinite-dimensional solution. We find that just above the glass transition, the glass generically yields at a finite shear strain. The yielding transition in the mean-field picture is a spinodal point in presence of disorder. At higher densities, instead, we find that the glass generically jams at a finite shear strain: the jamming transition prevents yielding. The shear yielding and shear jamming lines merge in a critical point, close to which the system yields at extremely large shear stress. Around this point, highly nontrivial yielding dynamics, characterized by system-spanning disordered fractures, is expected.

Shear Yielding and Shear Jamming of Dense Hard Sphere Glasses / Urbani, P; Zamponi, F. - In: PHYSICAL REVIEW LETTERS. - ISSN 0031-9007. - 118:3(2017). [10.1103/PhysRevLett.118.038001]

Shear Yielding and Shear Jamming of Dense Hard Sphere Glasses

Zamponi F
2017

Abstract

We investigate the response of dense hard sphere glasses to a shear strain in a wide range of pressures ranging from the glass transition to the infinite-pressure jamming point. The phase diagram in the densityshear strain plane is calculated analytically using the mean-field infinite-dimensional solution. We find that just above the glass transition, the glass generically yields at a finite shear strain. The yielding transition in the mean-field picture is a spinodal point in presence of disorder. At higher densities, instead, we find that the glass generically jams at a finite shear strain: the jamming transition prevents yielding. The shear yielding and shear jamming lines merge in a critical point, close to which the system yields at extremely large shear stress. Around this point, highly nontrivial yielding dynamics, characterized by system-spanning disordered fractures, is expected.
2017
Glass transition; fluctuations; statistical mechanics
01 Pubblicazione su rivista::01a Articolo in rivista
Shear Yielding and Shear Jamming of Dense Hard Sphere Glasses / Urbani, P; Zamponi, F. - In: PHYSICAL REVIEW LETTERS. - ISSN 0031-9007. - 118:3(2017). [10.1103/PhysRevLett.118.038001]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1693847
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