Title :
tdkp/AQUA: Unified modelling of electroluminescence in nanostructures
Author :
Steiger, Sebastian ; Veprek, Ratko G. ; Witzigmann, Bernd
Author_Institution :
Integrated Syst. Lab., ETH Zurich, Zurich, Switzerland
Abstract :
This article summarizes the capabilities of the optoelectronic simulation framework tdkp/AQUA aimed at the description of electroluminescence in semiconductor nanostructures such as light-emitting diodes (LEDs). tdkp is a standalone finite-element software able to accurately calculate strain, built-in fields due to spontaneous and piezoelectric polarization, quantum states, gain and luminescence spectra in zero- to three-dimensional structures. AQUA calculates transport through nanostructures using an original model which accounts for the distinct behaviour of carriers confined to active regions and unconfined carriers. Furthermore, it computes electroluminescence spectra via a self-consistent coupling of the confined carriers to quantum-mechanical calculations using tdkp. Two examples are presented which highlight the versatility and generality of the developed simulator.
Keywords :
III-V semiconductors; dielectric polarisation; electroluminescence; gallium compounds; indium compounds; light emitting diodes; nanoelectronics; piezoelectricity; quantum well devices; semiconductor device models; wide band gap semiconductors; AQUA software; InGaN-GaN; built-in fields; electroluminescence; electroluminescence spectra; gain spectra; light-emitting diodes; optoelectronic simulation; piezoelectric polarization; quantum states; quantum-mechanical calculations; self-consistent confined carrier coupling; semiconductor nanostructures; spontaneous polarization; standalone finite-element software; tdkp software; three-dimensional structure; zero-dimensional structure; Capacitive sensors; Carrier confinement; Electroluminescence; Embedded software; Finite element methods; Light emitting diodes; Luminescence; Piezoelectric polarization; Quantum computing; Semiconductor nanostructures;
Conference_Titel :
Numerical Simulation of Optoelectronic Devices, 2009. NUSOD 2009. 9th International Conference on
Conference_Location :
Gwangju
Print_ISBN :
978-1-4244-4180-8
DOI :
10.1109/NUSOD.2009.5297218