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January 23, 2026Advanced Optical Materials0 citations

Carrier Dynamics of β ‐Ga 2 O 3 Single Crystal

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PLPing LanMDMinhui DaiFZFangming Zhao

Key Points

  • The aim is to understand carrier dynamics in beta-Ga2O3 single crystals to enhance device performance.
  • Investigated dynamics from sub-picosecond to microseconds in unintentionally doped beta-Ga2O3 (100) crystals.
  • Resolved sub-picosecond dynamics into two Gaussian processes and a single-exponential decay.
  • Explored defect-state-mediated recombination processes on diverse timescales.
  • Identified three distinct kinetic components in the carrier dynamics.
  • Two Gaussian processes linked to nondegenerate two-photon absorption were observed.
  • Single-exponential decay related to hot carrier relaxation was detected.

Abstract

Abstract β ‐Ga 2 O 3 is a promising ultra‐wide bandgap semiconductor with substantial potential for optoelectronic applications. A deeper understanding of its carrier dynamics is essential for optimizing device performance. In this study, the carrier dynamics in unintentionally doped β ‐Ga 2 O 3 (100) single crystals across a broad range of timescales, from sub‐picosecond to microseconds, are investigated. The sub‐picosecond dynamics are resolved into three distinct kinetic components: two Gaussian processes, which are attributed to nondegenerate two‐photon absorption, and a single‐exponential decay corresponding to hot carrier relaxation. Additionally, defect‐state‐mediated carrier recombination processes that occur on timescales ranging from picoseconds to microseconds are explored. These findings offer valuable insights into the photophysical properties of β ‐Ga 2 O 3 , providing a foundation for optimizing its performance in future optoelectronic devices.

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Cite This Study

Lan et al. (2026) studied this question.

synapsesocial.com/papers/69731089c8125b09b0d204bfhttps://doi.org/10.1002/adom.202502258
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