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Optical and electrical properties of bandgap engineered gallium-doped films

✍ Scribed by Wei Wei; Chunming Jin; Jagdish Narayan; Roger J. Narayan


Publisher
Elsevier Science
Year
2009
Tongue
English
Weight
808 KB
Volume
149
Category
Article
ISSN
0038-1098

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✦ Synopsis


In this study, the optical and electrical properties of heavily gallium-doped Mg x Zn 1-x O films were investigated. Films were epitaxially grown on c-plane sapphire substrates using pulsed laser deposition. Film transparency was shown to be greater than 90% in the visible spectrum. Absorption was shown to be extended to lower wavelengths in films with higher magnesium concentration values. Although transparency in the ultraviolet wavelength range was improved, conductivity was decreased. In Mg x Zn 1-x O films with 0.5 at.% gallium, resistivity was increased from 1.9Γ—10 -3 cm to 3.62Γ—10 -2 cm as the magnesium concentration was increased from five atomic percent to fifteen atomic percent. These efforts will facilitate the development of zinc oxide-based ultraviolet-blue light emitting diodes, ultraviolet-blue light laser diodes, and other optoelectronic devices.


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