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Synergistic graphene/aluminum surface plasmon coupling for zinc oxide lasing improvement 被引量:6

Synergistic graphene/aluminum surface plasmon coupling for zinc oxide lasing improvement
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摘要 Collective oscillations of free electrons generate plasmons on the surface of a material. A whispering-gallery microcavity effectively confines the light field on its surface based on the total reflection from its internal wall. When these two kinds of electromagnetic waves meet each other, the stimulated emissions from an individual ZnO microrod were enhanced more than 50-fold and the threshold was reduced after the whispering-gallery microcavity was coated with a monolayer of graphene and A1 nanoparticles. The improvement of the lasing performance was attributed to the synergistic energy coupling of the graphene/A1 surface plasmons with ZnO excitons. The lasing characteristics and the coupling mechanism were investigated systematically. Collective oscillations of free electrons generate plasmons on the surface of a material. A whispering-gallery microcavity effectively confines the light field on its surface based on the total reflection from its internal wall. When these two kinds of electromagnetic waves meet each other, the stimulated emissions from an individual ZnO microrod were enhanced more than 50-fold and the threshold was reduced after the whispering-gallery microcavity was coated with a monolayer of graphene and A1 nanoparticles. The improvement of the lasing performance was attributed to the synergistic energy coupling of the graphene/A1 surface plasmons with ZnO excitons. The lasing characteristics and the coupling mechanism were investigated systematically.
出处 《Nano Research》 SCIE EI CAS CSCD 2017年第6期1996-2004,共9页 纳米研究(英文版)
关键词 ZnO microrod A1 nanoparticles GRAPHENE surface plasmons energy coupling ZnO microrod,A1 nanoparticles,graphene,surface plasmons,energy coupling
分类号 O [理学]
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