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Nonlinear susceptibility in glassy systems: A probe for cooperative dynamical length scales

2005/01/31 by Jean‐Philippe Bouchaud, Jean-Philippe Bouchaud, Giulio Biroli
Materials Science · Physics and Astronomy · #Liquid Crystal Research Advancements #Material Dynamics and Properties #Theoretical and Computational Physics #cond-mat.dis-nn #cond-mat.stat-mech

paper · pdf · doi:10.1103/physrevb.72.064204

12 pages, 3 figures; a careful discussion of the spin-glass case in a field added

arxiv created 2005/02/18 · openalex publication_date 2005/08/11 · arxiv updated 2009/12/01 · openalex created_date 2016/06/24 · openalex updated_date 2026/07/28

Abstract

We argue that for generic systems close to a critical point, an extended fluctuation-dissipation relation connects the low frequency nonlinear (cubic) susceptibility to the four-point correlation function. In glassy systems, the latter contains interesting information on the heterogeneity and cooperativity of the dynamics. Our result suggests that if the abrupt slowing down of glassy materials is indeed accompanied by the growth of a cooperative length \ensuremathℓ, then the nonlinear, 3\ensuremathω response to an oscillating field (at frequency \ensuremathω) should substantially increase and give direct information on the temperature (or density) dependence of \ensuremathℓ. The analysis of the nonlinear compressibility or the dielectric susceptibility in supercooled liquids, or the nonlinear magnetic susceptibility in spin-glasses, should give access to a cooperative length scale, that grows as the temperature is decreased or as the age of the system increases. Our theoretical analysis holds exactly within the mode-coupling theory of glasses.

Citations