CONDUCTIVITY OF THE SELF-SIMILAR LORENTZ CHANNEL

Barra, F; Gilbert, T; Reyes, S

Abstract

The self-similar Lorentz billiard channel is a spatially extended deterministic dynamical system which consists of an infinite one-dimensional sequence of cells whose sizes increase monotonously according to their indices. This special geometry induces a drift of particles flowing from the small to the large scales. In this article we further explore the dynamical and statistical properties of this billiard. We derive from the ensemble average of the velocity a conductivity formula previously obtained by invoking the equality between phase-space contraction rate and the phenomenological entropy production rate. This formula is valid close to equilibrium. We also review other transport and ergodic properties of this billiard. © 2009 World Scientific Publishing Company.

Más información

Título según WOS: CONDUCTIVITY OF THE SELF-SIMILAR LORENTZ CHANNEL
Título según SCOPUS: Conductivity of the self-similar lorentz channel
Título de la Revista: International Journal of Bifurcation and Chaos
Volumen: 19
Número: 8
Editorial: World Scientific Publishing Co. Pte Ltd
Fecha de publicación: 2009
Página de inicio: 2687
Página final: 2694
Idioma: eng
URL: http://www.worldscientific.com/doi/abs/10.1142/S0218127409024402
DOI:

10.1142/S0218127409024402

Notas: ISI, SCOPUS