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  4. Gamma-ray irradiation effect on planar defect evolution of lattice-matched InGaAsN/GaAs/Ge grown by MOVPE
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Gamma-ray irradiation effect on planar defect evolution of lattice-matched InGaAsN/GaAs/Ge grown by MOVPE

Author(s)
Wanarattikan, Pornsiri
Phakkhawan, Authit
Sakulkalavek, Aparporn
Jangsawang, Nongnuch
Kijamnajsuk, Suphakan
Yordsri, Visittapong
Sanorpim, Sakuntam
Klangtakai, Pawinee
Date Issued
September 1, 2024
Type
Article
DOI
10.1016/j.vacuum.2024.113396
Abstract
This study explores structural changes in lattice-matched InGaAsN/GaAs/Ge films grown by MOVPE under gamma-ray irradiation. Exposure to a 60Co gamma rays at doses ranging from 0 to 2.0 MGy improved crystal uniformity by increasing surface grain size, reducing roughness from 8.328 nm to 3.512 nm. Planar defects in the GaAs layer traversed the InGaAsN layer, causing interface roughness. Electron diffraction patterns along the [110]-zone axis showed uniform alloy composition. TEM images revealed line contrasts at the GaAs/Ge interface extending into the InGaAsN layer, with boundary-like defects parallel to the growth direction. Additionally, (002) and (002‾) reflections, along with {111} planes, indicated planar defects, possibly antiphase boundaries. AFM and FESEM confirmed submicron-sized domains, characteristic of antiphase boundaries, in the InGaAsN film.
Citation
Vacuum, 227, 2024
Subjects

Gamma-ray irradiation...

High-energy particle

InGaAsN

Lattice-matched

Planar defect

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