Origins of lasing emission in a resonance-controlled ZnO random laser

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Abstract

We investigate the origins of lasing emission in a scatterer-resonance-controlled random laser made of ZnO nanopowder over a wide temperature range (20-300 K). At higher temperatures (>150 K), the lasing emission appears around exciton recombination energies and the lasing threshold carrier density is comparable to the Mott density, indicating that the resonance-controlled random laser is going toward showing excitonic lasing; at lower temperatures, random lasing is caused by usual electron-hole plasma recombination because of the threshold carrier density being much larger than the Mott density.

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Nakamura, T., Fujiwara, H., Niyuki, R., Sasaki, K., Ishikawa, Y., Koshizaki, N., … Adachi, S. (2014). Origins of lasing emission in a resonance-controlled ZnO random laser. New Journal of Physics, 16. https://doi.org/10.1088/1367-2630/16/9/093054

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