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April 30, 2026Materials Science in Semiconductor Processing2 citationsOpen Access

Effects of film thickness and electrode spacing on the performance of Ga2O3 MSM UV-C photodetectors for optical communication

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HTHiep N. TranHNHilal NagibAHAnh Ho

Key Points

  • This research aims to evaluate how film thickness and electrode spacing impact the performance of Ga2O3 MSM UV-C photodetectors.
  • Fabrication of MSM photodetectors using RF sputtered n-type a-Ga2O3 films with thicknesses from 20 to 220 nm
  • Testing responsivity and detectivity at various electrode separations of 5 to 80 μm
  • Measurement of response times under different conditions including encapsulation effects
  • Responsivity improved to 7.85 A/W and detectivity reached 1.28 × 10^13 Jones with the thickest films.
  • Response time increased moderately with thickness but was primarily affected by charge-trapping effects.
  • Morse-coded UV-C signal transmission was successfully demonstrated, indicating practical applications in optical communication.

Abstract

Metal-semiconductor-metal (MSM) UV-C detectors have been fabricated on RF sputtered n-type a-Ga 2 O 3 films with thicknesses of 20 – 220 nm and electrode separations of 5 – 80 μm. Increased film thickness led to performance improvements with responsivity of 7.85 A/W and detectivity of 1.28 × 10 13 Jones exhibited by a device formed on the thickest film. Response (rise and fall) time increased moderately with thickness. The separation of the dual contacts in the MSM device determined the transit time but charge-trapping effects most influenced the response times. Encapsulation minimised the effects of surface adsorption/desorption on surface electronic properties and thus stabilised the photo-responses of the devices. Finally, short range transmission and reception of Morse-coded UV-C signals was demonstrated to highlight the potential for low-cost a-Ga 2 O 3 based MSM photodetectors to enable UV-C communications.

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Cite This Study

Tran et al. (2026) studied this question.

synapsesocial.com/papers/69f2f0e31e5f7920c6386e40https://doi.org/10.1016/j.mssp.2026.110737
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