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Physical and reliability characteristics of Hf-based gate dielectrics on strained-Si1-xGex MOS devices

  • Pei Jer Tzeng*
  • , Siddheswar Maikap
  • , Peng Shiu Chen
  • , Yu Wei Chou
  • , Chieh Shuo Liang
  • , Lurng Shehng Lee
  • *此作品的通信作者
  • Industrial Technology Research Institute of Taiwan

研究成果: 期刊稿件文章同行評審

7 引文 斯高帕斯(Scopus)

摘要

The physical and reliability characteristics of strained-Si 0.8Ge0.2 MOS capacitor and strained-Si 0.7Ge0.3 MOSFET with Hf-based gate dielectrics prepared by atomic layer chemical vapor deposition are investigated. The thickness and composition of the gate dielectrics are measured by high-resolution transmission electron microscopy and X-ray photoelectron spectroscopy, respectively. The gate leakage current and interface traps of HfO2/Si 1-xGex gate structure are slightly higher as compared to the HfO2/Si MOS devices, which is basically caused by the Ge at the interface. The electrical properties of both HfO2/Si and HfO 2/Si1-xGex devices can be improved with increasing PDA temperature up to 800°C, which is due to the thicker interfacial layer grown at the interface, even though crystallization also grows with increasing temperature. However, with higher PDA temperature (>800°C), serious crystallization of HfO2 film causes more bulk traps induced electrical degradation. The electrical stress induced degradation of Si1-xGex substrate is slightly higher as compared to the control Si, due to more traps generations at the HfO 2/Si1-xGex interface. For MOSFET, strained-Si1-xGex can effectively improve the drain current for about 20% at saturation and 69% at linear region. The higher gate leakage (Jg ∼ 1.4 × 10-9 A/cm2 at 2 V) and lower breakdown voltage (BD ∼ 3.1 V) of Si0.7Ge 0.3 pMOS devices are observed as compared to control Si devices (Jg ∼ 7.9 × 10-12 A/cm2 at 2 V and BD ∼ 7.4 V). After the electrical stress, the degradation of drain current and transconductance and the shift of threshold voltage for Si1-xGe x PMOSFET are larger than those for control Si devices, implying Ge induced trap generation at the Hf-silicate/Si1-xGex interface.

原文英語
頁(從 - 到)168-176
頁數9
期刊IEEE Transactions on Device and Materials Reliability
5
發行號2
DOIs
出版狀態已出版 - 06 2005
對外發佈

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