Abstract
The undoped and Cr3+-doped LiGa5O8 microcrystalline powder samples have been studied in the 6 - 650 K temperature range with the use of the X-ray diffraction, photoluminescence, cathodoluminescence, thermoluminescence, and electron paramagnetic resonance methods. The origin of the electron and hole centers responsible for the thermoluminescence and near-infrared long-lasting persistent luminescence of LiGa5O8:Cr, as well as the mechanisms of the processes taking place under selective photoexcitation in the exciton and different Cr3+-related absorption bands, have been investigated. The complex 4.35 eV excitation band of the Cr3+-related luminescence is suggested to arise from both the 4A2g → 4T1g(4P) electron transitions of a Cr3+ ion and the electron-transfer transitions from the ground state of a Cr3+ ion to the conduction band, producing the hole Cr4+ centers and various electron centers. Temperature dependencies of the photoluminescence intensity have been studied for the emission bands, arising from the 2Eg → 4A2g and 4T2g → 4A2g electron transitions of Cr3+ ions. The activation energy is determined for the thermal population of the upper 4T2g excited state of a Cr3+ ion from the lowest 2Eg excited state (≈75 meV).
| Original language | English |
|---|---|
| Article number | 122007 |
| Journal | Journal of Luminescence |
| Volume | 297 |
| DOIs | |
| Publication status | Published - Sept 2026 |
| Externally published | Yes |
OECD Field of Science
- 1.3 Physical Sciences
Keywords
- Electron and hole centers
- Electron transfer
- Excitons
- LiGaO:Cr
- Luminescence
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