activity
19982003
most citedFunctional Renormalization Group and the Field Theory of Disordered Elastic Systems

122 citations · 122 across the 1 of their papers we have counts for

collaborators

7 papers

cond-mat2003★ 122 cited

Functional Renormalization Group and the Field Theory of Disordered Elastic Systems

Pierre Le Doussal, Kay Joerg Wiese, Pascal Chauve

We study elastic systems such as interfaces or lattices, pinned by quenched disorder. To escape triviality as a result of ``dimensional reduction'', we use the functional renormali…

cond-mat2002

2-loop Functional Renormalization Group Theory of the Depinning Transition

Pierre Le Doussal, Kay Joerg Wiese, Pascal Chauve

We construct the field theory which describes the universal properties of the quasi-static isotropic depinning transition for interfaces and elastic periodic systems at zero temper…

cond-mat2000

Exact renormalization group and applications to disordered problems: part I

Pascal Chauve, Pierre Le Doussal

We develop a systematic multi-local expansion of the Polchinski-Wilson exact renormalization group (ERG) equation. Integrating out explicitly the non local interactions, we reduce…

cond-mat2000

Renormalization of pinned elastic systems: how does it work beyond one loop ?

Pascal Chauve, Pierre Le Doussal, Kay Wiese

We study the field theories for pinned elastic systems at equilibrium and at depinning. Their -functions differ to two loops by novel ``anomalous'' terms. At equilibrium we find…

cond-mat.dis-nn2000

Creep and depinning in disordered media

Pascal Chauve, Thierry Giamarchi, Pierre Le Doussal

Elastic systems driven in a disordered medium exhibit a depinning transition at zero temperature and a creep regime at finite temperature and slow drive . We derive functional r…

cond-mat1999

Dynamical Transverse Meissner Effect and Transition in Moving Bose Glass

Pascal Chauve, Pierre Le Doussal, Thierry Giamarchi

We study moving periodic structures in presence of correlated disorder using renormalisation group. We find that the effect of disorder persists at all velocities resulting at zero…