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Morphological evolution of a-GaN on r-sapphire by metalorganic chemical vapor deposition

  • Ling Sang*
  • , Jian Ming Liu
  • , Xiao Qing Xu
  • , Jun Wang
  • , Gui Juan Zhao
  • , Chang Bo Liu
  • , Cheng Yan Gu
  • , Gui Peng Liu
  • , Hong Yuan Wei
  • , Xiang Lin Liu
  • , Shao Yan Yang
  • , Qin Sheng Zhu
  • , Zhan Guo Wang
  • *Corresponding author for this work
  • CAS - Institute of Semiconductors

Research output: Contribution to journalArticlepeer-review

Abstract

The morphological evolution of a-GaN deposited by metalorganic chemical vapor deposition (MOCVD) on r-sapphire is studied. The influences of V/III ratio and growth temperature on surface morphology are investigated. V-pits and stripes are observed on the surface of a-GaN grown at 1050°C and 1100°C, respectively. The overall orientation and geometry of V-pits are uniform and independent on the V/III molar ratio in the samples grown at 1050°C, while in the samples grown at 1100°C, the areas of stripes decrease with the adding of V/III ratio. We deduce the origin of V-pits and stripes by annealing the buffer layers at different temperatures. Because of the existence of inclined (1011) facets, V-pits are formed at 1050°C. The (1011) plane is an N terminated surface, which is metastable at higher temperature, so stripes instead of V-pits are observed at 1100°C. Raman spectra suggest that the growth temperature of the first layer in the two-step process greatly affects the strain of the films. Hence, to improve the growth temperature of the first layer in the two-step method may be an effective way to obtain high quality a-GaN film on r-sapphire.

Original languageEnglish
Article number026801
JournalChinese Physics Letters
Volume29
Issue number2
DOIs
StatePublished - Feb 2012
Externally publishedYes

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