Tuneable red, green, and blue single-mode lasing in heterogeneously coupled organic spherical microcavities

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作者
Yuxiang Du
Chang-Ling Zou
Chunhuan Zhang
Kang Wang
Chan Qiao
Jiannian Yao
Yong Sheng Zhao
机构
[1] Chinese Academy of Sciences,CAS Key Laboratory of Photochemistry, Institute of Chemistry
[2] University of Chinese Academy of Sciences,Key Laboratory of Quantum Information, and Synergetic Innovation Center of Quantum Information and Quantum Physics
[3] University of Science and Technology of China,undefined
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摘要
Tuneable microlasers that span the full visible spectrum, particularly red, green, and blue (RGB) colors, are of crucial importance for various optical devices. However, RGB microlasers usually operate in multimode because the mode selection strategy cannot be applied to the entire visible spectrum simultaneously, which has severely restricted their applications in on-chip optical processing and communication. Here, an approach for the generation of tuneable multicolor single-mode lasers in heterogeneously coupled microresonators composed of distinct spherical microcavities is proposed. With each microcavity serving as both a whispering-gallery-mode (WGM) resonator and a modulator for the other microcavities, a single-mode laser has been achieved. The colors of the single-mode lasers can be freely designed by changing the optical gain in coupled cavities owing to the flexibility of the organic materials. Benefiting from the excellent compatibility, distinct color-emissive microspheres can be integrated to form a heterogeneously coupled system, where tuneable RGB single-mode lasing is realized owing to the capability for optical coupling between multiple resonators. Our findings provide a comprehensive understanding of the lasing modulation that might lead to innovation in structure designs for photonic integration.
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