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Jamming, Yielding, and Irreversible Deformation in Condensed Matter

M. Carmen Miguel ; Miguel Rubi (eds.)

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Institución detectada Año de publicación Navegá Descargá Solicitá
No detectada 2006 SpringerLink

Información

Tipo de recurso:

libros

ISBN impreso

978-3-540-30028-1

ISBN electrónico

978-3-540-33204-6

Editor responsable

Springer Nature

País de edición

Reino Unido

Fecha de publicación

Información sobre derechos de publicación

© Springer 2006

Tabla de contenidos

Jamming and Yielding of Dislocations: from Crystal Plasticity to Superconducting Vortex Flow

Stefano Zapperi; M. Carmen Miguel; Paolo Moretti; Micheal Zaiser

We discuss the statistical properties of interacting dislocations in plastically deformed crystals. Due to their long-range mutual interactions, dislocations arrange into jammed configurations, that can be set into motion under the action of an external stress. Disorder provides an additional source of pinning which we study by scaling theories, considering the case of parallel arrays of dislocations in a pileup or a low angle grain boundaries. As an application of these ideas, we discuss the plastic yielding of a vortex lattice in the Corbino disk and the growth of a vortex polycrystal in a field cooling experiment.

Pp. 189-205