English

An alternative form of Hooge's relation for 1/f noise in semiconductor materials

General Physics 2021-08-17 v1

Abstract

Single quantum dots and other materials exhibit irregular switching between on and off states; these on-off states follow power-law statistics giving rise to 1/f noise. We transfer this phenomenon (also referred to as on-off intermittency) to the generation and recombination (g-r) process in semiconductor materials. In addition to g-r noise we obtain 1/f noise that can be provided in the form of the Hooge relation. The predicted Hooge coefficient depends on the parameters of the g-r noise and on the parameters of the intermittency. Due to the power-law distribution of the on-times, the coefficient for intermittency shows a smooth dependence on time t. We also suggest an alternative form of the 1/f noise formula by Hooge relating the 1/f noise to the number of centers (such as donor or trap atoms) rather than to the number of charge carriers as defined by Hooge.

Keywords

Cite

@article{arxiv.2108.07155,
  title  = {An alternative form of Hooge's relation for 1/f noise in semiconductor materials},
  author = {Ferdinand Grueneis},
  journal= {arXiv preprint arXiv:2108.07155},
  year   = {2021}
}

Comments

17 pages, 9 figures