Average energy Confined phonons Analytic expressions Linear absorption
Issue Date:
2010
Publisher:
Journal of Electromagnetic Waves and Applications
Citation:
Volume: 24, Issue: 13, Page : 1751-1761
Abstract:
The nonlinear absorption coefficient (NAC) of a strong electromagnetic wave (EMW) by confined
electrons in quantum wells under the influences of confined phonons is theoretically studied by using the
quantum transport equation for electrons. In comparison with the case of unconfined phonons, the
dependence of the NAC on the energy (Latin small letter h with stroke??), the amplitude (Eo) of external
strong EMW, the width of quantum wells (L) and the temperature (T) of the system in both cases of
confined and unconfined phonons is obtained. Two limited cases for the absorption: close to the absorption
threshold (|kLatin small letter h with stroke?? - Latin small letter h with stroke??0| ? ε) and far away
from the absorption threshold (|kLatin small letter h with stroke?? - Latin small letter h with stroke??o| ?
ε) (k = 0,?1,?2,..., ??o and ε are the frequency of optical phonon and the average energy of
electron, respectively) are considered. The formula of the NAC contains the quantum number m
characterizing confined phonons and is easy to come back to the case of unconfined phonons and linear
absorption. The analytic expressions are numerically evaluated, plotted and discussed for a specific case of
the GaAs/GaAsAl quantum well. Results show that there are more resonant peaks of the NAC which appear
in the case of confined phonons when ?? > ?? 0 than in that of unconfined phonons. The spectrums of the
NAC are very different from the linear absorption and strongly depend on m. ?? 2010 VSP.