An energy balance equation model coupled with drift‐diffusion transport equations are solved in heterojunction p‐i‐n diodes with embedded single quantum well to model hot electron effects. A detailed formulation of hot electron transport is presented. In the well, the carrier energy levels are estimated from the analytical expressions applied to a quantum well with finite height. Both bound and free carriers are modeled by Fermi‐Dirac statistics. Both size quantization and the two dimensional density of states in the well are considered. Thermionic emission is applied to the heterojunctions and quantum wells boundary. Energy transfer among the charge carriers and crystal lattice is modeled by an energy relaxation lifetime. Two sets of devices are simulated. First, the simulated kinetic energy and carrier density profiles were compared with published Monte Carlo results on an GaAs n+/n/n+ diode. Second, the current‐voltage characteristics of an embedded single quantum well AlGaAs/GaAs p‐i‐n structure was compared with measured data. Both comparisons are satisfactory and demonstrate the usefulness of the model for studying quantum well structures.
Article navigation
1 September 2002
Research Article|
September 01 2002
Detailed formulation of energy balance equations in single quantum well devices
H.Z. Fardi
H.Z. Fardi
Deptartment of Electrical Engineering, University of Colorado at Denver, Denver, Colorado, USA
Search for other works by this author on:
Publisher: Emerald Publishing
Online ISSN: 2054-5606
Print ISSN: 0332-1649
© MCB UP Limited
2002
COMPEL (2002) 21 (3): 425–437.
Citation
Fardi H (2002), "Detailed formulation of energy balance equations in single quantum well devices". COMPEL, Vol. 21 No. 3 pp. 425–437, doi: https://doi.org/10.1108/03321640210423324
Download citation file:
New and popular articles
Suggested Reading
The application of turbulent kinetic theory to a reacting flow of turbulent plane jet
International Journal of Numerical Methods for Heat & Fluid Flow (March,1998)
Thermal‐fluid transport phenomena in strongly heated channel flows
International Journal of Numerical Methods for Heat & Fluid Flow (December,2000)
HF chemical laser analysis of twin plane jets via a kinetic theory approach
International Journal of Numerical Methods for Heat & Fluid Flow (June,1994)
EAI unveils new human simulation solutions for ergonomic analysis of workplace tasks
Assembly Automation (December,1999)
DELMIA prevents Gridlock at Baxi Potterton
Assembly Automation (June,2004)
Related Chapters
Achieving Minimal Consensus for New Industries: Bringing Isomorphism Back in
How Institutions Matter!
Quantitative Measures of Cognitive Map Structure: Probability Distributions Derived by Monte Carlo Simulation
Methodological Challenges and Advances in Managerial and Organizational Cognition
Using process capability analysis and simulation to improve patient flow
Applications of Management Science
Recommended for you
These recommendations are informed by your reading behaviors and indicated interests.
