Title :
AFORS-HET: a computer-program for the simulation of heterojunction solar cells to be distributed for public use
Author :
Froitzheim, A. ; Stangl, R. ; Elstner, L. ; Kriegel, M. ; Fuhs, W.
Author_Institution :
Hahn-Meitner-Inst., Berlin, Germany
Abstract :
We offer a numerical simulation tool, AFORS-HET, for public use, which allows to model homo- as well as heterojunction devices. AFORS-HET is the short form of automat for simulation of heterostructures and can be downloaded via the internet: http://www.hmi.de/bereiche/SE/SE1/projects/aSicSi/AFORS-HET. An arbitrary sequence of semiconducting layers can be modelled. A variety of boundary conditions can be chosen. The program solves the one dimensional semiconductor equations in steady-state and for small sinusoidal ac-perturbations. Furthermore, a variety of common characterisation techniques have been implemented, current-voltage (I-V), internal quantum efficiency (IQE), impedance, capacitance (CV, CT), static surface photovoltage (SPV), electron beam induced current (EBIC) and photoluminescence (PL). A user-friendly interface allows to easily perform parameter variations, and to visualise and compare your simulations.
Keywords :
EBIC; photoluminescence; semiconductor device models; semiconductor heterojunctions; solar cells; surface photovoltage; AFORS-HET; Si-Si:H; boundary condition; capacitance; current-voltage measurement; electron beam induced current; heterojunction device; heterojunction solar cell; homojunction device; impedance; internal quantum efficiency; numerical simulation tool; one dimensional semiconductor equation; photoluminescence; semiconducting layer; sinusoidal ac-perturbation; static surface photovoltage; user-friendly interface;
Conference_Titel :
Photovoltaic Energy Conversion, 2003. Proceedings of 3rd World Conference on
Conference_Location :
Osaka, Japan
Print_ISBN :
4-9901816-0-3