Dephasing and weak localization in disordered Luttinger liquid
arXiv:cond-mat/0407305 · doi:10.1103/PhysRevLett.95.046404
Abstract
We study the transport properties of interacting electrons in a disordered quantum wire within the framework of the Luttinger liquid model. The conductivity at finite temperature is nonzero only because of inelastic electron-electron scattering. We demonstrate that the notion of weak localization is applicable to the strongly correlated one-dimensional electron system. We calculate the relevant dephasing rate, which for spinless electrons is governed by the interplay of electron-electron interaction and disorder, thus vanishing in the clean limit.
4+ pages, 3 figures. Reference added