DocumentCode :
3807017
Title :
Electron Transport and Terahertz Gain in Quantum-Dot Cascades
Author :
Nenad Vukmirovic;Dragan Indjin;Zoran Ikonic;Paul Harrison
Author_Institution :
Univ. of Leeds, Leeds
Volume :
20
Issue :
2
fYear :
2008
Firstpage :
129
Lastpage :
131
Abstract :
Electron transport through quantum-dot (QD) cascades was investigated using the formalism of nonequilibrium Green´s functions within the self-consistent Born approximation. Polar coupling to optical phonons, deformation potential coupling to acoustic phonons, as well as anharmonic decay of longitudinal optical phonons were included in the simulation. A QD cascade laser structure comprising two QDs per period was designed and its characteristics were simulated. Significant values of population inversion enabling lasing in the terahertz frequency range were predicted, with operating current densities being more than an order of magnitude smaller than in existing terahertz quantum-well-based quantum-cascade lasers.
Keywords :
"Quantum dots","Phonons","Quantum cascade lasers","Optical coupling","Electron optics","Green´s function methods","Scattering","Approximation methods","Deformable models","Optical design"
Journal_Title :
IEEE Photonics Technology Letters
Publisher :
ieee
ISSN :
1041-1135
Type :
jour
DOI :
10.1109/LPT.2007.912533
Filename :
4427298
Link To Document :
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