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    Gan Chen-Li, Nie Zhi-Qiang, Li Ling, Shen Lei-Jian, Zhang Yan-Peng, Song Jian-Ping, Li Yuan-Yuan, Zhang Xiang-Chen, Lu Ke-Qing. Six-wave mixing phase-dispersion by optical heterodyne detection in dressed reverse N-type four-level systemJ. Chin. Phys. B, 2007, 16(11): 3407-3415.
    Gan Chen-Li, Nie Zhi-Qiang, Li Ling, Shen Lei-Jian, Zhang Yan-Peng, Song Jian-Ping, Li Yuan-Yuan, Zhang Xiang-Chen, Lu Ke-Qing. Six-wave mixing phase-dispersion by optical heterodyne detection in dressed reverse N-type four-level systemJ. Chin. Phys. B, 2007, 16(11): 3407-3415.
  • Six-wave mixing phase-dispersion by optical heterodyne detection in dressed reverse N-type four-level system

    • We have investigated the dressed effects of non-degenerate four-wave mixing (NDFWM) and demonstrated a phase-sensitive method of studying the fifth-order nonlinear susceptibility due to atomic coherence in RN-type four-level system. In the presence of a strong coupling field, NDFWM spectrum exhibits Autler–Townes splitting, accompanied by either suppression or enhancement of the NDFWM signal, which is directly related to the competition between the absorption and dispersion contributions. The heterodyne-detected nonlinear absorption and dispersion of six-wave mixing signal in the RN-type system show that the hybrid radiation-matter detuning damping oscillation is in the THz range and can be controlled and modified through the colour-locked correlation of twin noisy fields.
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