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We investigated theoretically the exciton–plasmon coupling effects on the population dynamics and the absorption properties of a hybrid nanosystem composed of a metal nanoparticle (MNP) and a V-type three-level semiconductor quantum dot (SQD), which are created by the interaction with the induced dipole moments in the SQD and the MNP, respectively. Excitons of the SQD and the plasmons of the MNP in such a hybrid nanosystem could be coupled strongly or weakly to demonstrate novel properties of the hybrid system. We also find that the gain happens in such a hybrid system, because of the coherent interaction between the SQD and the MNP. Our results show that the non-linear optical response of the hybrid nanosystem can be greatly enhanced or depressed due to the exciton–plasmon couplings.  相似文献   
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Ko  Myong-Chol  Kim  Nam-Chol  Choe  Song-Il  Hao  Zhong-Hua  Zhou  Li  Li  Jian-Bo  Kim  Il-Gwang  Wang  Qu-Quan 《Plasmonics (Norwell, Mass.)》2016,11(6):1613-1619
Plasmonics - By using the real-space method, the switching of a single plasmon interacting with a hybrid nanosystem composed of a semiconductor quantum dot (SQD) and a metallic nanoparticle (MNP)...  相似文献   
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