• Acta Optica Sinica
  • Vol. 41, Issue 18, 1827001 (2021)
Haitao Zhou*, Yupeng Dai, Ruixiang Guo, Shuyun Xie, Dan Wang, and Baodong Yang
Author Affiliations
  • College of Physics and Electronic Engineering, Shanxi University, Taiyuan, Shanxi 030006, China
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    DOI: 10.3788/AOS202141.1827001 Cite this Article Set citation alerts
    Haitao Zhou, Yupeng Dai, Ruixiang Guo, Shuyun Xie, Dan Wang, Baodong Yang. Experimental Research on Optical Amplification Effect Induced by Degenerate Four-Wave Mixing[J]. Acta Optica Sinica, 2021, 41(18): 1827001 Copy Citation Text show less
    Diagrams of experimental details. (a) Schematic diagram of transition between degenerate energy levels in D1 line of 133Cs atom; (b) schematic diagram of experimental equipments
    Fig. 1. Diagrams of experimental details. (a) Schematic diagram of transition between degenerate energy levels in D1 line of 133Cs atom; (b) schematic diagram of experimental equipments
    Normalized transmission spectra of signal light and conjugate light for 4 kinds of transitions between degenerate energy levels at different temperatures. (a) Fg=4→Fe=3; (b) Fg=4→Fe=4; (c) Fg=3→Fe=3; (d) Fg=3→Fe=4
    Fig. 2. Normalized transmission spectra of signal light and conjugate light for 4 kinds of transitions between degenerate energy levels at different temperatures. (a) Fg=4→Fe=3; (b) Fg=4→Fe=4; (c) Fg=3→Fe=3; (d) Fg=3→Fe=4
    Zeeman sublevels for 4 kinds of transitions between degenerate energy levels. (a) Fg=4→Fe=3; (b) Fg=4→Fe=4; (c) Fg=3→Fe=3; (d) Fg=3→Fe=4
    Fig. 3. Zeeman sublevels for 4 kinds of transitions between degenerate energy levels. (a) Fg=4→Fe=3; (b) Fg=4→Fe=4; (c) Fg=3→Fe=3; (d) Fg=3→Fe=4
    Effects of various experimental parameters on gains of signal light and conjugate light in three kinds of transitions between degenerate energy levels. (a) Pump power; (b) temperature of Cs atomic chamber; (c) frequency detuning of pump light
    Fig. 4. Effects of various experimental parameters on gains of signal light and conjugate light in three kinds of transitions between degenerate energy levels. (a) Pump power; (b) temperature of Cs atomic chamber; (c) frequency detuning of pump light
    Schematic diagrams of transitions between different degenerate energy levels after introducing driving light of 852 nm. (a) Fg=4→Fe=3; (b) Fg=4→Fe=4
    Fig. 5. Schematic diagrams of transitions between different degenerate energy levels after introducing driving light of 852 nm. (a) Fg=4→Fe=3; (b) Fg=4→Fe=4
    Effect of introducing driving light of 852 nm on gain of a pair of DFWM conjugated beams. (a)(c) Gains of DFWM signals versus pump power; (b)(d) normalized transmission spectra at maximum gain
    Fig. 6. Effect of introducing driving light of 852 nm on gain of a pair of DFWM conjugated beams. (a)(c) Gains of DFWM signals versus pump power; (b)(d) normalized transmission spectra at maximum gain
    Haitao Zhou, Yupeng Dai, Ruixiang Guo, Shuyun Xie, Dan Wang, Baodong Yang. Experimental Research on Optical Amplification Effect Induced by Degenerate Four-Wave Mixing[J]. Acta Optica Sinica, 2021, 41(18): 1827001
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