4.6 Article

Random laser action in the visible region by dye-based sliver nano-hexagonal colloid media

期刊

PHYSICA SCRIPTA
卷 96, 期 11, 页码 -

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IOP PUBLISHING LTD
DOI: 10.1088/1402-4896/ac14e1

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random laser; nano hexagonal; rhodamine B; threshold power

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A new type of random lasing media based on silver nano-hexagonal scattering centers was demonstrated to reduce the threshold for dye-based random lasers. By synthesizing nano hexagonal silver scatterer points and dissolving them in polymer and Rhodamine B dye media in different concentrations and sizes, it was found that the threshold power and linewidths of emission peaks decreased with an increase in the size and concentrations of nano-hexagonal points.
In our attempt to reduce the threshold for dye-based random lasers, a new kind of random lasing media is demonstrated based on silver nano-hexagonal as scattering centers. For this purpose, we use a chemical method to synthesize nano hexagonal silver scatterer points and dissolve them in polymer and Rhodamine B dye media in different concentrations and different sizes. Our results from these samples under different pumping power, confirm the strong dependence on the sizes and concentration on the transition from incoherent to the coherent random laser, which is starts from 0.061 MW cm(-2) as threshold power. This threshold power and linewidths of emission peaks decrease by an increase in the size and concentrations of nano-hexagonal points to 0.04 MW cm(-2) and 0.2 nm, respectively.

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