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2011 | 120 | 3 | 552-557

Article title

Properties of~Rf Plasma Nitrided Silicon Thin Films at Different Rf Plasma Processing Powers

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EN

Abstracts

EN
Nitrided surfaces and composition gradients in thin films exhibit interesting mechanical, electrical and optical properties. Therefore, silicon (Si) thin films were prepared by electron beam evaporation and nitrided by an inductively coupled rf plasma. The effects of successive plasma processing power on structural and optical properties as well as electrical resistivity were examined by different characterization techniques. The Si thin films were transformed gradually into nitrides compound thin films and the amount of nitrogen in the film increased with increasing the rf processing power. The Si nitrided films showed structural, optical and electrical properties that depend on the nitriding power. Increasing the rf plasma processing power caused amorphization, reduced the thickness, increased transmittance, increased resistivity and decreased the reflectance of the Si films. The electrical resistivity increased about eight orders of magnitude when the sample nitrided at 500 W. Different optical band gap were determined indicating the presence of different competing phases in the same film. The decrease in refractive index with plasma treatment power is attributed to the possible change in the bucking density as well as to the increase in the band gap.

Keywords

Contributors

author
  • Physics Department, College of Science, Qassim University, P.O.B. 6644, 51452, Buryadh, Kingdom of Saudi Arabia
  • Physics Department, Faculty of Science, Sohag University, 82524 Sohag, Egypt
author
  • Physics Department, Faculty of Science, Sohag University, 82524 Sohag, Egypt
  • Physics Department, Faculty of Science, Sohag University, 82524 Sohag, Egypt
author
  • Physics Department, College of Science, Qassim University, P.O.B. 6644, 51452, Buryadh, Kingdom of Saudi Arabia
  • Department of Physics, Faculty of Science, Al-Azahar University, Assiut, 71542, Egypt

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bwmeta1.element.bwnjournal-article-appv120n334kz
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