Ultra-strong optical four-wave mixing signal induced by strong exciton-phonon and exciton-plasmon couplings

Author:

Guo Qing-Qing1,Liang Shan2,Gong Bo1,Li Jian-Bo1,Xiao Si3ORCID,He Meng-Dong1,Chen Li-Qun1

Affiliation:

1. Central South University of Forestry and Technology

2. Hunan Normal University

3. Central South University

Abstract

We propose a scheme to generate ultra-strong four-wave mixing (FWM) signal based on a suspended monolayer graphene nanoribbon nanomechanical resonator (NR) coupled to an Au nanoparticle (NP). It is shown that, the FWM spectrum can switch among two-peaked, three-peaked, four-peaked or five-peaked via the modulation of exciton-phonon and exciton-plasmon couplings. This is mainly attributed to the vibrational properties of NR related to the exciton-phonon coupling, and the energy-level splitting of the localized exciton correlated to three classes of resonances consisting of three-photon resonance, Rayleigh Resonance, and AC-Stark atomic resonance. Especially, in a dual-strong coupling regime, the gains for these peaks can be as high as nine orders of magnitude (∼ 109) around the lower bistable threshold due to a combined effect of two couplings. Our findings not only offer an efficient way to measure the vibrational frequency of NR and the exciton-phonon coupling strength but also provide a possibility to fabricate high-performance optoelectronic nanodevices.

Funder

Undergraduate Innovation and Entrepreneurship Training Program of Hunan Province

Scientific Research Fund of Hunan Provincial Education Department

Natural Science Foundation of Hunan Province

National Natural Science Foundation of China

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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