Abstract
Single-crystalline Sb shallow-doped ZnO microwire wave-guided optical resonators are synthesized via a simple carbothermal reduction method. The formation of the ZnO wave-guided microcavities are investigated systematically, and the Sb film formed on the substrate is confirmed to be the critical factor in crystal growth. The optical signals of the annealed ZnO microcavities induced by the Sb related acceptor defects are clarified through a low-temperature spectrum detection technology. Excitation power and temperature dependence of UV lasing properties of the ZnO microcavities annealed in different atmospheres are studied. The results reveal that such high-quality Sb shallow-doped ZnO wave-guided microcavities have excellent optical responses and a strong light-field regulation capability, which would greatly promote the development of ZnO cavity-based photoelectronic devices. Sb shallow-doped ZnO microwire wave-guided microcavities are synthesized. The photoluminescence properties and UV lasing of such ZnO microcavities with Sb elements annealed in different atmo-spheres are investigated through low-temperature spectrum detection technology. The ZnO microcavities provide a promising test-bed for investigating new optical modulation behaviour, cavity physics, and for novel photoelectronic devices.
| Original language | English |
|---|---|
| Pages (from-to) | 1090-1097 |
| Number of pages | 8 |
| Journal | Advanced Optical Materials |
| Volume | 2 |
| Issue number | 11 |
| DOIs | |
| State | Published - 1 Nov 2014 |
| Externally published | Yes |
Keywords
- Microcavities
- Microwires
- Optical modulation
- Optical resonators
- UV lasing
- Wave guides
- ZnO
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