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Temperature dependence of optical centres in ultrapure diamond after 200 keV electron irradiation

  • Kaiyue Wang
  • , Ruiang Guo
  • , Senchuan Ding
  • , Hongxing Wang
  • , Yuming Tian
  • , Yingmin Wang
  • Taiyuan University of Science and Technology
  • Xi'an Jiaotong University
  • Shanxi Engineering Vocational College
  • Electronic Technology Group

Research output: Contribution to journalArticlepeer-review

15 Scopus citations

Abstract

In this work, we conduct a temperature-dependent study of optical centres in ultrapure diamond after 200 keV irradiation by photoluminescence spectra, which are performed in a temperature range of 80-200 K. The zero phonon lines (ZPLs) include sizes of 550.3 nm, 593 nm, and 741 nm (GR1 centre). With an increase in measurement temperature, the ZPLs shift to the lower energy side, together with intensity quenching and an increase in the full width at half maximum. These results are noted in models of lattice contraction and electron-phonon coupling, and their inhomogeneous and homogeneous broadening mechanisms are also carefully distinguished by the Voigt function. The 550.3 nm and 593 nm emissions present harder bonds than the GR1 centre, close thermal quenching energies to the interstitial-related defect, a lower thermal softness than that of the ideal diamond, weak phonon bands at each lower energy side, and different broadening mechanisms with the GR1 centre, indicating that the 550.3 nm and 593 nm lines are possibly interstitial-related.

Original languageEnglish
Article number135303
JournalJournal of Physics D: Applied Physics
Volume53
Issue number13
DOIs
StatePublished - 21 Jan 2020

Keywords

  • Diamond
  • Photoluminescence
  • Temperature dependence
  • Zero phonon line

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