Random Lasing Action from Randomly Assembled ZnS Nanosheets
Hui Ying Yang, S. F. Yu, Jian Yan, LD Zhang
Abstract
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Hui Ying Yang, S. F. Yu, Jian Yan, LD Zhang
Abstract
Open-access reader
Lasing characteristics of randomly assembled ZnS nanosheets are studied at room temperature. Under 266-nm optical excitation, sharp lasing peaks emitted at around 332 nm with a linewidth less than 0.4 nm are observed in all directions. In addition, the dependence of lasing threshold intensity with the excitation area is shown in good agreement with the random laser theory. Hence, it is verified that the lasing characteristics of randomly assembled ZnS nanosheets are attributed to coherent random lasing action.
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Lasing characteristics of randomly assembled ZnS nanosheets are studied at room temperature. Under 266-nm optical excitation, sharp lasing peaks emitted at around 332 nm with a linewidth less than 0.4 nm are observed in all directions. In addition, the dependence of lasing threshold intensity with the excitation area is shown in good agreement with the random laser theory. Hence, it is verified that the lasing characteristics of randomly assembled ZnS nanosheets are attributed to coherent random lasing action.
Key concepts: Lasing threshold, Random laser, Laser linewidth, Materials science, Excitation, Laser, Gain-switching, Nanochemistry