most citedOn the thermoelectricity of correlated electrons in the zero-temperature limit

277 citations

6 papers

cond-mat.dis-nn200538 cited

Disorder chaos in spin glasses

Florent Krzakala, Jean-Philippe Bouchaud

We investigate numerically disorder chaos in spin glasses, i.e. the sensitivity of the ground state to small changes of the random couplings. Our study focuses on the Edwards-Ander…

cond-mat.stat-mech200518 cited

Monte Carlo algorithms for charged lattice gases

L. Levrel, A. C. Maggs

We consider Monte Carlo algorithms for the simulation of charged lattice gases with purely local dynamics. We study the mobility of particles as a function of temperature and show…

cond-mat.dis-nn200527 cited

Subdiffusion and dynamical heterogeneities in a lattice glass model

Eric Bertin, Jean-Philippe Bouchaud, Francois Lequeux

We study a kinetically constrained lattice glass model in which continuous local densities are randomly redistributed on neighbouring sites with a kinetic constraint that inhibits…

cond-mat.stat-mech200423 cited

Glassy properties of the Kawasaki dynamics of two-dimensional ferromagnets

Florent Krzakala

We study numerically the Kawasaki dynamics of the 2d Ising model. At large time we recover the coarsening growth as l(t) ~ t^(1/3). At shorter time however, the system enters a met…

cond-mat.stat-mech2004168 cited

Elastic wave propagation in confined granular systems

Ellak Somfai, Jean-Noel Roux, Jacco H. Snoeijer +2

We present numerical simulations of acoustic wave propagation in confined granular systems consisting of particles interacting with the three-dimensional Hertz-Mindlin force law. T…

cond-mat.str-el2004277 cited

On the thermoelectricity of correlated electrons in the zero-temperature limit

Kamran Behnia, Didier Jaccard, Jacques Flouquet

The Seebeck coefficient of a metal is expected to display a linear temperature-dependence in the zero-temperature limit. To attain this regime, it is often necessary to cool the sy…