Thermal versus radiation-assisted defect annealing in beta-Ga2O3

  • Azarov, Alexander; 
  • Venkatachalapathy, Vishnukanthan; 
  • Lee, In-Hwan; 
  • Kuznetsov, Andrej
Citations

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17
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17

초록

Gallium oxide (Ga2O3) exhibits complex behavior under ion irradiation since ion-induced disorder affects not only the functional properties but can provoke polymorphic transformations in Ga2O3. A conventional way used to minimize the lattice disorder is by doing postirradiation anneals. An alternative approach is to prevent the disorder accumulation from the beginning, by doing implants at elevated temperatures, so that a significant fraction of the disorder dynamically anneals out in radiation-assisted processes. Here, we use these two approaches for the minimization of radiation disorder in monoclinic beta-Ga2O3 implanted to a dose below the threshold required for the polymorphic transformations. The results obtained by a combination of channeling and x-ray diffraction techniques revealed that implants at 300? effectively suppress the defect formation in beta-Ga2O3. On the other hand, in order to reach similar crystalline quality in the samples implanted at room temperature, postirradiation anneals in excess of 900 ? are necessary.

키워드

ION; IMPLANTATION; TEMPERATURE; DISORDER; STRAIN
제목
Thermal versus radiation-assisted defect annealing in beta-Ga2O3
저자
Azarov, Alexander; Venkatachalapathy, Vishnukanthan; Lee, In-Hwan; Kuznetsov, Andrej
DOI
10.1116/6.0002388
발행일
2023-03-01
유형
Article
저널명
Journal of Vacuum Science and Technology A
권
41
호
2