Strong coupling-like phenomenon in single metallic nanoparticle embedded in molecular J-aggregates

Author:

Feng Xin1,Wang Chen2,Ma Hongjing3,Chen Yuanyuan4,Duan Gaoyan5,Zhang Pengfei5,Song Gang5

Affiliation:

1. School of Management Science and Engineering, Hebei GEO University, Shijiazhuang 050031, China

2. Space Star Technology Co., Ltd., Beijing 100086, China

3. Shijiazhuang Posts and Telecommunications Technical College, Shijiazhuang 050033, China

4. China South Industries Research Academy, Beijing 100089, China

5. School of Science, Beijing University of Posts and Telecommunications, Beijing 100876, China

Abstract

Strong coupling-like phenomenon between plasmonic cavities and emitters provides a new way to realize the quantum-like effect controlling at microscale/nanoscale. We investigate the strong coupling-like phenomenon in the structure of single metallic nanoparticle embedded in molecular J-aggregates by the classical simulation method and show that the size of the metallic nanoparticle and the oscillator strength of molecular J-aggregates impact the strong coupling-like phenomenon. The strong coupling-like phenomenon is induced by the interactions between two dipoles formed by the metallic nanoparticle and molecular J-aggregates or the interactions between the dipole generated from molecular J-aggregates and the quadrupole generated from the metallic nanoparticle. The strong coupling-like phenomenon appears evidently with the increase in oscillator strength of molecular J-aggregates. The detuning energy linearly decreases with the increase in radius of the metallic nanoparticle. Our structure has potential applications in quantum networks, quantum key distributions and so on.

Funder

Humanity and Social Science Youth foundation of Ministry of Education of China

Education Informational Project of China Association of Higher Education

Doctoral Scientific Fund Project of Hebei Geo University

Pre Research Fund for NSFC of Hebei Geo University

Hebei Social Science Foundation

Publisher

World Scientific Pub Co Pte Lt

Subject

Condensed Matter Physics,Statistical and Nonlinear Physics

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