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Manipulating the light-matter interactions in plasmonic nanocavities at 1 nm spatial resolution 被引量:1
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作者 BAO-YING WEN JING-YU WANG +10 位作者 TAI-LONG SHEN ZHEN-WEI ZHU PENG-CHENG GUAN JIA-SHENG LIN WEI PENG WEI-WEI CAI HUAIZHOU JIN qing-chi xu ZHI-LIN YANG ZHONG-QUN TIAN JIAN-FENG LI 《Light(Science & Applications)》 SCIE EI CAS CSCD 2022年第9期2107-2114,共8页
The light-matter interaction between plasmonic nanocavity and exciton at the sub-diffraction limit is a central research field in nanophotonics.Here,we demonstrated the vertical distribution of the light-matter intera... The light-matter interaction between plasmonic nanocavity and exciton at the sub-diffraction limit is a central research field in nanophotonics.Here,we demonstrated the vertical distribution of the light-matter interactions at~1 nm spatial resolution by coupling A excitons of MoS2 and gap-mode plasmonic nanocavities.Moreover,we observed the significant photoluminescence(PL)enhancement factor reaching up to 2800 times,which is attributed to the Purcell effect and large local density of states in gap-mode plasmonic nanocavities.Meanwhile,the theoretical calculations are well reproduced and support the experimental results. 展开更多
关键词 RESOLUTION LIGHT PLASMON
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