Improved light output from thick β-Ga2O3scintillation crystals via graded-refractive-index photonic crystals

  • Zhichao Zhu
  • , Bo Liu
  • , Fan Zhang
  • , Huili Tang
  • , Jun Xu
  • , Mu Gu
  • , Chi Zhang
  • , Liang Chen
  • , Jinliang Liu
  • , Xiaoping Ouyang

Research output: Contribution to journalArticlepeer-review

12 Scopus citations

Abstract

β-Ga2O3 is a promising candidate as a fast scintillation crystal for radiation detection in fast X-ray imaging and high-energy physics experiments. However, total internal reflection severely limits its light output. Conventional photonic crystals can improve the light output, but such improvement decreases dramatically with increased scintillator thickness due to the strong backward reflection by the photonic crystals. Here, graded-refractive-index photonic crystals composed of nanocone arrays are designed and fabricated on the surfaces of β-Ga2O3 crystals with various thicknesses. Compared to the conventional photonic crystals, there is still an obvious light output improvement by using the graded-refractive-index photonic crystals when the thickness of the crystals is increased by three times. The effect of thickness on the improved light output is investigated with numerical simulations and experiments. Overall, the graded-refractive-index photonic crystals are beneficial to the improvement of light output from thick scintillators.

Original languageEnglish
Pages (from-to)18646-18653
Number of pages8
JournalOptics Express
Volume29
Issue number12
DOIs
StatePublished - 7 Jun 2021
Externally publishedYes

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