Tunneling effects on impurity spectral function in coupled asymmetric quantum wires
arXiv:cond-mat/0308191 · doi:10.1103/PhysRevB.68.165304
Abstract
The impurity spectral function is studied in coupled double quantum wires at finite temperatures. Simple anisotropy in the confinement direction of the wires leads to finite non-diagonal elements of the impurity spectral function matrix. These non-diagonal elements are responsible for tunneling effects and result in pronounced extra peak in the impurity spectral function up to temperatures as high as 20 K.
Accepted in Phys. Rev. B