Scientific Reports (Aug 2022)

Suppression of stacking fault expansion in a 4H-SiC epitaxial layer by proton irradiation

  • Shunta Harada,
  • Toshiki Mii,
  • Hitoshi Sakane,
  • Masashi Kato

DOI
https://doi.org/10.1038/s41598-022-17060-y
Journal volume & issue
Vol. 12, no. 1
pp. 1 – 8

Abstract

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Abstract SiC bipolar degradation, which is caused by stacking fault expansion from basal plane dislocations in a SiC epitaxial layer or near the interface between the epitaxial layer and the substrate, is one of the critical problems inhibiting widespread usage of high-voltage SiC bipolar devices. In the present study, we investigated the stacking fault expansion behavior under UV illumination in a 4H-SiC epitaxial layer subjected to proton irradiation. X-ray topography observations revealed that proton irradiation suppressed stacking fault expansion. Excess carrier lifetime measurements showed that stacking fault expansion was suppressed in 4H-SiC epitaxial layers with proton irradiation at a fluence of 1 × 1011 cm−2 without evident reduction of the excess carrier lifetime. Furthermore, stacking fault expansion was also suppressed even after high-temperature annealing to recover the excess carrier lifetime. These results implied that passivation of dislocation cores by protons hinders recombination-enhanced dislocation glide motion under UV illumination.