English

Profile alterations of a symmetrical light pulse coming through a quantum well

Mesoscale and Nanoscale Physics 2009-10-31 v1

Abstract

The theory of a response of a two-energy-level system, irradiated by symmetrical light pulses, has been developed.(Suchlike electronic system approximates under the definite conditions a single ideal quantum well (QW) in a strong magnetic field {\bf H}, directed perpendicularly to the QW's plane, or in magnetic field absence.) The general formulae for the time-dependence of non-dimensional reflection {\cal R}(t), absorption {\cal A}(t) and transmission {\cal T}(t) of a symmetrical light pulse have been obtained. It has been shown that the singularities of three types exist on the dependencies {\cal R}(t), {\cal A}(t), {\cal T}(t). The oscillating time dependence of {\cal R}(t), {\cal A}(t), {\cal T}(t) on the detuning frequency \Delta\omega=\omega_l-\omega_0 takes place. The oscillations are more easily observable when \Delta\omega\simeq\gamma_l. The positions of the total absorption, reflection and transparency singularities are examined when the frequency \omega_l is detuned.

Keywords

Cite

@article{arxiv.cond-mat/0006364,
  title  = {Profile alterations of a symmetrical light pulse coming through a quantum well},
  author = {L. I. Korovin and I. G. Lang D. A. Contreras-Solorio and S. T. Pavlov},
  journal= {arXiv preprint arXiv:cond-mat/0006364},
  year   = {2009}
}

Comments

9 pages, 13 figures with captions