Nanoscale Kerr Nonlinearity Enhancement Using Spontaneously Generated Coherence in Plasmonic Nanocavity

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作者
Hongyi Chen
Juanjuan Ren
Ying Gu
Dongxing Zhao
Junxiang Zhang
Qihuang Gong
机构
[1] State Key Laboratory for Mesoscopic Physics,
[2] Collaborative Innovation Center of Quantum Matter,undefined
[3] School of Physics,undefined
[4] Peking University,undefined
[5] Collaborative Innovation Center of Extreme Optics,undefined
[6] Shanxi University,undefined
[7] State Key Laboratory of Quantum Optics and Quantum Optics Devices,undefined
[8] Institute of Opto-Electronics,undefined
[9] Shanxi University,undefined
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摘要
The enhancement of the optical nonlinear effects at nanoscale is important in the on-chip optical information processing. We theoretically propose the mechanism of the great Kerr nonlinearity enhancement by using anisotropic Purcell factors in a double-Λ type four-level system, i.e., if the bisector of the two vertical dipole moments lies in the small/large Purcell factor axis in the space, the Kerr nonlinearity will be enhanced/decreased due to the spontaneously generated coherence accordingly. Besides, when the two dipole moments are parallel, the extremely large Kerr nonlinearity increase appears, which comes from the double population trapping. Using the custom-designed resonant plasmonic nanostructure which gives an anisotropic Purcell factor environment, we demonstrate the effective nanoscale control of the Kerr nonlinearity. Such controllable Kerr nonlinearity may be realized by the state-of-the-art nanotechnics and it may have potential applications in on-chip photonic nonlinear devices.
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