Single-excitation dual-color coherent lasing by tuning resonance energy transfer processes in porous structured nanowires

Single-excitation dual-color coherent lasing was achieved in a mixed random system of a binary dye and the suspension of gold-silver porous nanowires with plenty of nanogaps. This greatly enhanced the local electromagnetic field in the visible range and guaranteed a low threshold and high Q factor (...

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Veröffentlicht in:Nanoscale 2015-10, Vol.7 (37), p.15091-15098
Hauptverfasser: Wang, Zhaona, Shi, Xiaoyu, Yu, Ruomeng, Wei, Sujun, Chang, Qing, Wang, Yanrong, Liu, Dahe, Wang, Zhong Lin
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Sprache:eng
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Zusammenfassung:Single-excitation dual-color coherent lasing was achieved in a mixed random system of a binary dye and the suspension of gold-silver porous nanowires with plenty of nanogaps. This greatly enhanced the local electromagnetic field in the visible range and guaranteed a low threshold and high Q factor (>10 000) operator for simultaneous dual-color lasing. By tuning the resonance energy transfer process in the stimulated emission, triple output modes (single chartreuse lasing, chartreuse and red dual-color lasing, and single red coherent lasing) were easily obtained. This triple-mode coherent random lasing introduces a new approach to designing multi-functional micro-optoelectronic devices for multi-color speckle-free imaging and interference.
ISSN:2040-3364
2040-3372
DOI:10.1039/c5nr03349g