We re-examine and correct an earlier derivation of the distribution of the Wigner phase delay time for wave reflection from a long one-dimensional disordered conductor treated in the continuum limit. We then numerically compare the distributions of the Wigner phase delay time and the dwell time, the latter being obtained by the use of an infinitesimal imaginary potential as a clock, and investigate the effects of strong disorder and a periodic (discrete) lattice background. We find that the two distributions coincide even for strong disorder, but only for energies well away from the band-edges
The Wigner time delay, defined by the energy derivative of the total scattering phase shift, is an i...
We investigate the statistical properties of the scattering matrix $S$ describing the electron trans...
We study the scattering theory for the descrete Schrodinger equation with a random potential having ...
We re-examine and correct an earlier derivation of the distribution of the Wigner phase delay time f...
We re-examine and correct an earlier derivation of the distribution of the Wigner phase delay time ...
We consider the scattering of an electron from a semi-infinite one-dimensional random medium. The ra...
We show that the delay time distribution for wave reflection from a one-dimensional (one-channel) ra...
We have studied the reflection delay time distribution from a one-dimensional electronically random ...
11 pages, four references addedWe consider the scattering by a one-dimensional random potential and ...
In the first part we study the statistical properties of the Wigner timedelay for one-dimensional di...
We numerically investigate the statistical properties of Wigner delay time in Anderson disordered 1D...
We study the time delay of reflected and transmitted waves in 1D disordered media with high transmis...
We investigate the effects of wave localization on the delay time � (frequency sensitivity of the s...
We show that the delay time distribution for wave reflection from a one-dimensional (one-channel) ra...
The Wigner delay time is addressed semiclassically using Miller’s S-matrix expressed in terms of ope...
The Wigner time delay, defined by the energy derivative of the total scattering phase shift, is an i...
We investigate the statistical properties of the scattering matrix $S$ describing the electron trans...
We study the scattering theory for the descrete Schrodinger equation with a random potential having ...
We re-examine and correct an earlier derivation of the distribution of the Wigner phase delay time f...
We re-examine and correct an earlier derivation of the distribution of the Wigner phase delay time ...
We consider the scattering of an electron from a semi-infinite one-dimensional random medium. The ra...
We show that the delay time distribution for wave reflection from a one-dimensional (one-channel) ra...
We have studied the reflection delay time distribution from a one-dimensional electronically random ...
11 pages, four references addedWe consider the scattering by a one-dimensional random potential and ...
In the first part we study the statistical properties of the Wigner timedelay for one-dimensional di...
We numerically investigate the statistical properties of Wigner delay time in Anderson disordered 1D...
We study the time delay of reflected and transmitted waves in 1D disordered media with high transmis...
We investigate the effects of wave localization on the delay time � (frequency sensitivity of the s...
We show that the delay time distribution for wave reflection from a one-dimensional (one-channel) ra...
The Wigner delay time is addressed semiclassically using Miller’s S-matrix expressed in terms of ope...
The Wigner time delay, defined by the energy derivative of the total scattering phase shift, is an i...
We investigate the statistical properties of the scattering matrix $S$ describing the electron trans...
We study the scattering theory for the descrete Schrodinger equation with a random potential having ...