Invertis Journal of Renewable Energy
  • Year: 2014
  • Volume: 4
  • Issue: 2

Effect of Patch Size on Current-Voltage Characteristics of Inhomogeneous Schottky Diodes with Discrete Distribution of Barrier Height Patches

  • Author:
  • Priyanka Kaushal, Subhash Chand
  • Total Page Count: 4
  • Page Number: 97 to 100

Department of Physics, National Institute of Technology, Hamirpur-177 005 (HP)

*E-mail: priyankanit84@gmail.com

Online published on 10 August, 2015.

Abstract

The Poisson's equation and the drift diffusion equations have been used to simulate the current-voltage characteristics of inhomogeneous Schottky diodes with discrete distribution of barrier height patches of varying size. The potential variation inside the bulk semiconductor near the metal-semiconductor contact is calculated and then the current as a function of bias through the Schottky diode for various patch sizes are calculated. From the simulated current-voltage characteristics the diode parameters were extracted by fitting of current-voltage data into thermionic emission diffusion current equation. The derived barrier parameters are analyzed to study the effect of different barrier patch size on the current-voltage characteristics of inhomogeneities Schottky diodes.

Keywords

Numerical simulation, Current-voltage characteristics, Barrier inhomogeneities, Ideality factor