Electron and Hole Surface Roughness Scattering-Limited Mobilities in Oxygen-Inserted (Oi) Si Channel
Publication Date
5-25-2026
Document Type
Article
Publication Title
Journal of Applied Physics
Volume
139
Issue
12
DOI
10.1063/5.0316691
Abstract
The electron and hole surface roughness scattering (SRS)-limited mobilities, deconvolved from 4.2 K measurements, were compared between oxygen-inserted (OI) and control Si channel for n- and pMOSFETs. It was found that electron SRS-limited mobility in the OI-Si channel is 55% higher, whereas hole SRS-limited mobility is comparable to the control. To elucidate the difference, the Si/Si O2 interface roughness and the nanoscale thickness variation of the gate oxide were analyzed in detail, via high-resolution transmission electron microscopy images, and fed into numerical calculation of the SRS-limited mobility. The power spectral densities (PSDs) based on the Yule–Walker autoregressive model revealed that the OI-Si has a smaller surface roughness at low-frequency components, corresponding to the electron Fermi surface energy level. In contrast, surface roughness improvement was found to be less at a higher frequency region of the PSDs corresponding to the hole Fermi surface energy level. Furthermore, an oxygen tracer experiment identified a dynamic exchange process between the Si/Si O2 interface and the OI-Si layer, suggesting an opportunity for improving hole SRS-limited mobility in the OI-Si channel via tuning post-oxidation thermal process steps.
Funding Number
2046220
Funding Sponsor
National Science Foundation
Creative Commons License

This work is licensed under a Creative Commons Attribution 4.0 License.
Department
Electrical Engineering
Recommended Citation
Vikram Magendar, Yi Ann Chen, Albert Lu, Donghun Kang, Daniel Connelly, Marek Hytha, Hideki Takeuchi, Robert Mears, and Hiu Yung Wong. "Electron and Hole Surface Roughness Scattering-Limited Mobilities in Oxygen-Inserted (Oi) Si Channel" Journal of Applied Physics (2026). https://doi.org/10.1063/5.0316691