Logo image
Gate leakage current suppression and reliability improvement for ultra-low EOT Ge MOS devices by suitable HfAlO/HfON thickness and sintering temperature
Conference paper   Peer reviewed

Gate leakage current suppression and reliability improvement for ultra-low EOT Ge MOS devices by suitable HfAlO/HfON thickness and sintering temperature

Wei-Fong Chi, Kuei-Shu Chang-Liao, Shih-Han Yi, Chen-Chien Li and Yan-Lin Li
Microelectronics Reliability, Vol.55(11), pp.2183-2187
2015

Abstract

EOT Ge MOS HfAlO HfON High-k Sintering
Ultra-low effective oxide thickness (EOT) Ge MOS devices with different HfAlO/HfON stacks and sintering temperatures are investigated in this work. The suppression of gate leakage current and improvement of reliability properties can be achieved by either stacked gate dielectrics or a low sintering temperature. Especially, the qualities of the interface and high-k gate dielectric in Ge devices are significantly improved through a low sintering temperature. A 0.5 nm HfAlO/2.5 nm HfON gate stack and a sintering temperature at 350 °C are the suitable conditions to achieve low EOT, gate leakage, and good reliability for Ge MOS devices.

Metrics

1 Record Views

Details

Logo image