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One-step synthesis of organic microwire-disk interconnected structure for miniaturized channel filters

One-step synthesis of organic microwire-disk interconnected structure for miniaturized channel filters
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摘要 Miniaturized channel filters are in high demand for many applications such as photonic integrated circuits, information-based technology, and platforms for investigation of light–matter interactions.Recently, several photonic schemes have been proposed to achieve nanofilters, which require sophisticated growth techniques. Here, we have fabricated microdisk whispering-gallery-mode(WGM) resonators through controlled assembly of organic materials with an emulsion-solventevaporation method. Based on this emulsion assembly method, the diameters of microdisks can be easily controlled, and more importantly, a microwire-disk interconnected structure is able to be constructed via one-step assembly. This microwire-waveguide-connected microdisk heterostructure can be utilized as a channel drop filter. Our results have demonstrated a facile way to achieve flexible WGM-based photonic components which can be integrated with other functional devices. Miniaturized channel filters are in high demand for many applications such as photonic integrated circuits, information-based technology, and platforms for investigation of light–matter interactions.Recently, several photonic schemes have been proposed to achieve nanofilters, which require sophisticated growth techniques. Here, we have fabricated microdisk whispering-gallery-mode(WGM) resonators through controlled assembly of organic materials with an emulsion-solventevaporation method. Based on this emulsion assembly method, the diameters of microdisks can be easily controlled, and more importantly, a microwire-disk interconnected structure is able to be constructed via one-step assembly. This microwire-waveguide-connected microdisk heterostructure can be utilized as a channel drop filter. Our results have demonstrated a facile way to achieve flexible WGM-based photonic components which can be integrated with other functional devices.
出处 《Chinese Chemical Letters》 SCIE CAS CSCD 2017年第3期563-568,共6页 中国化学快报(英文版)
基金 financially supported by the National Natural Science Foundation of China(Nos.61475014 and 61377028) the National Science Foundation for Distinguished Young Scholars of China(No.61125505) China Postdoctoral Science Foundation(Nos.2015M570923 and 2016T90030)
关键词 Self-assembly Organic nanostructures WGM resonators Heterostructures Channel drop filters Self-assembly Organic nanostructures WGM resonators Heterostructures Channel drop filters
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