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Universal Analytic Model of Irradiation Defect Dynamics in Silica-Silicon Structures

Applied Physics 2025-05-20 v2 Disordered Systems and Neural Networks Space Physics

Abstract

Irradiation damage is a key physics issue for semiconductor devices under extreme environments. For decades, the ionization-irradiation-induced damage in transistors with silica-silicon structures under constant dose rate is modeled by a uniform generation of EE' centers in the bulk silica region and their irreversible conversion to PbP_b centers at the silica-silicon interface. But, the traditional model fails to explain experimentally observed dependence of the defect concentrations on dose, especially at low dose rate. Here, we propose that, the generation of EE' is decelerated due to the dispersive diffusion of induced holes in the disordered silica and the conversion of PbP_b is reversible due to recombination-enhanced defect reactions under irradiation. It is shown that the derived analytic model based on these new understandings can consistently explain the fundamental but puzzling dependence of the defect concentrations on dose and dose rate in a wide range.

Keywords

Cite

@article{arxiv.2008.04486,
  title  = {Universal Analytic Model of Irradiation Defect Dynamics in Silica-Silicon Structures},
  author = {Yu Song and Guanghui Zhang and Xue-Fen Cai and Yang Liu and Hang Zhou and Le Zhong and Gang Dai and Xu Zuo and Su-Huai Wei},
  journal= {arXiv preprint arXiv:2008.04486},
  year   = {2025}
}

Comments

5 pages, 1 page of supplementary materials

R2 v1 2026-06-23T17:46:04.959Z