Modeling of the Electronic Properties of Hexagonal Semiconductors

Author:

Arif Ghassan E.1,Abdullah Farah Aini1,Al-Douri Y.2

Affiliation:

1. Universiti Sains Malaysia

2. University Malaysia Perlis

Abstract

This paper seeks to investigate the solvability of physical problem by utilizing the mathematical theory of differential equation. A new mathematical model based on mathematical modeling and differential equation is created. The objectives of this work sets up to model ionicity factor based on lattice constants (c/a) of hexagonal structure semiconductors using density functional theory (DFT) of full-potential linear augmented plane wave (FP-LAPW) within Engel Vosko-General Gradient Approximation (EV-GGA). Our determined values are in agreement with experimental and theoretical results.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference22 articles.

1. J.D. Meiss, Differential Dynamical Systems (Monographs on Mathematical Modeling and Computation, SIAM, Philadelphia (2007).

2. J.F. Nicaud, D. Bouhineau, H. Chaachoua, M. Bittar, Student's modelling with a lattice of conceptions in the domain of linear equations and inequations, 12th International Conference on Artificial Intelligence in Education, Amsterdam, The Netherlands (2005).

3. E. Mamontov, Ordinary differential equation system for population of individuals and the corresponding probabilistic model, Mathematical and Computer Modelling 49 (2009) 1551-12.

4. A. Witkin, D. Baraff, Physically Based Modeling Differential Equation Basics, USA (2001).

5. Ghassan E. Arif, Y. Al-Douri, Farah Aini Abdullah, R.  Khenata, Differential equations to determine the ionicity factor of hexagonal structure semiconductors, Superlattices and Microstructures (2012) DOI: 10. 1016/j. spmi. 2012. 09. 006.

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