Five-Fold Reduction of Lasing Threshold near the First -Pseudogap of ZnO Inverse Opals
arXiv:0907.0736 · doi:10.1088/2040-8978/12/2/024007
Abstract
We report room temperature lasing in ZnO inverse opal photonic crystals in the near-ultraviolet (UV) frequency. We observe random lasing due to disorder in the structures when the photonic pseudogaps are located away from the ZnO gain spectrum. Tuning the first -pseudogap to the gain peak leads to a five-fold reduction in lasing threshold and frequency shift of lasing modes due to the enhanced confinement of light.
10 pages, 6 figures
References in corpus (5)
- Dynamic light diffusion, Anderson localization and lasing in disordered inverted opals: 3D ab-initio Maxwell-Bloch computation
- Optical extinction due to intrinsic structural variations of photonic crystals
- A study of random laser modes in disordered photonic crystals
- An optical surface resonance may render photonic crystals ineffective
- Self-optimization of optical confinement in ultraviolet photonic crystal slab laser