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Nonlinear optical parameters of nanocrystalline AZO thin film measured at different substrate temperatures

  • Asim Jilani
  • , M. Sh Abdel-Wahab
  • , Attieh A. Al-Ghamdi
  • , Ammar Sadik Dahlan
  • , I. S. Yahia
  • King Abdulaziz University
  • Faculty of Postgraduate Studies for Advanced Sciences
  • King Abdulaziz University
  • King Khalid University
  • Ain Shams University

Research output: Contribution to journalArticlepeer-review

56 Scopus citations

Abstract

The 2.2 wt% of aluminum (Al)-doped zinc oxide (AZO) transparent and preferential c-axis oriented thin films were prepared by using radio frequency (DC/RF) magnetron sputtering at different substrate temperature ranging from room temperature to 200 °C. For structural analysis, X-ray Diffraction (XRD) and Atomic Force Electron Microscope (AFM) was used for morphological studies. The optical parameters such as, optical energy gap, refractive index, extinction coefficient, dielectric loss, tangent loss, first and third order nonlinear optical properties of transparent films were investigated. High transmittance above 90% and highly homogeneous surface were observed in all samples. The substrate temperature plays an important role to get the best transparent conductive oxide thin films. The substrate temperature at 150 °C showed the growth of highly transparent AZO thin film. Energy gap increased with the increased in substrate temperature of Al doped thin films. Dielectric constant and loss were found to be photon energy dependent with substrate temperature. The change in substrate temperature of Al doped thin films also affect the non-liner optical properties of thin films. The value of χ(3) was found to be changed with the grain size of the thin films that directly affected by the substrate temperature of the pure and Al doped ZnO thin films.

Original languageEnglish
Pages (from-to)97-103
Number of pages7
JournalPhysica B: Condensed Matter
Volume481
DOIs
StatePublished - 15 Jan 2016
Externally publishedYes

Keywords

  • A. Thin films
  • B. Sputtering
  • C. X-ray diffraction
  • D. Atomic force microscopy
  • E. Optical properties
  • F. Linear/nonlinear optical properties

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