Proceedings of 2015 Photonics & Electromagnetics Research Symposium, Prague, July 6 - 9,Page(s)1945-1948
Abstract
The quantum theory of the photostimulated effects in quantum wire has been
studied based on the quantum kinetic equation for electrons with a parabolic potential V (z) =
mω02 z 2
2 . In this case, electrons system in quantum wire is placed in a constant electric field
E~ 0 , an electromagnetic wave E(t)
~ ~ −iωt + eiωt ) and in the presence of an intense laser
= E(e
field F~ (t) = F~ sin Ωt. In the presence of laser radiation and polarized electromagnetic wave
~ 0 with open
can influence that current carrier, and do appear an electric field intensity vector E
circuit conditions. Hence, the analytic expressions of electric field intensity vector E ~ 0 along
the coordinate axes has been calculated. The dependence of the components E0 on the ~
frequency Ω of the laser radiation field, the frequency ω of the electromagnetic wave field, the
frequency ω0 of the parabolic potential are shown. From the analytic results, when ω0 → 0, the
result will turn back to the photostimulated kinetic effects in semiconductors.
Citation
Nguyen Quang Bau,
Nguyen Vu Nhan,
and
Hoang Van Ngoc,
"Photostimulated Quantum Effects in Quantum Wire with a Parabolic Potential," Proceedings of 2015 Photonics & Electromagnetics Research Symposium, Prague, July 6 - 9,Page(s)1945-1948