• Chinese Optics Letters
  • Vol. 15, Issue 12, 121901 (2017)
Wanxu Zhao1、2, Xiaohui Zhao1、2, Yuanlin Zheng1、2, Huaijin Ren3, and Xianfeng Chen1、2、*
Author Affiliations
  • 1State Key Laboratory of Advanced Optical Communication Systems and Networks, Department of Physics and Astronomy, Shanghai Jiao Tong University, Shanghai 200240, China
  • 2Key Laboratory for Laser Plasmas (Ministry of Education), Collaborative Innovation Center of IFSA (CICIFSA), Shanghai Jiao Tong University, Shanghai 200240, China
  • 3Institute of Applied Electronics, China Academy of Engineering Physics, Mianyang 621900, China
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    DOI: 10.3788/COL201715.121901 Cite this Article Set citation alerts
    Wanxu Zhao, Xiaohui Zhao, Yuanlin Zheng, Huaijin Ren, Xianfeng Chen. Conical sum-frequency generation in a bulk anomalous-like dispersion medium[J]. Chinese Optics Letters, 2017, 15(12): 121901 Copy Citation Text show less
    (Color online) (a) Layout of experimental setup. λ1=800 nm, λ2=1000–1600 nm. (b) Theoretical curves of the wave vector relationship of the interaction beams, where the incidences are both set to ordinary polarized, and the SFG is extraordinary polarized.
    Fig. 1. (Color online) (a) Layout of experimental setup. λ1=800nm, λ2=10001600nm. (b) Theoretical curves of the wave vector relationship of the interaction beams, where the incidences are both set to ordinary polarized, and the SFG is extraordinary polarized.
    (Color online) (a) Patterns on the screen by adjusting the wavelength of F2 from 1240 to 1320 nm. (b) The phase-matching diagram of the conical SH beam.
    Fig. 2. (Color online) (a) Patterns on the screen by adjusting the wavelength of F2 from 1240 to 1320 nm. (b) The phase-matching diagram of the conical SH beam.
    (Color online) (a) Conical SFG patterns with the wavelength of incidence F2 from 1420 to 1560 nm. (b) Diagram of complete phase-matching condition of conical SFG. (c) The internal emission angles α and β as a function of the pump wavelength.
    Fig. 3. (Color online) (a) Conical SFG patterns with the wavelength of incidence F2 from 1420 to 1560 nm. (b) Diagram of complete phase-matching condition of conical SFG. (c) The internal emission angles α and β as a function of the pump wavelength.
    (Color online) (a) Enhanced SFG patterns at the wavelength of incidence F2 of 1480 nm; the photograph below is the phase-matching SFG at two tangent points (see Visualization 1). (b) Diagram of phase-matching condition at the situation where the two SF rings are tangent. (c) Scheme of complete phase-matching by total reflection under the anomalous-like dispersion condition.
    Fig. 4. (Color online) (a) Enhanced SFG patterns at the wavelength of incidence F2 of 1480 nm; the photograph below is the phase-matching SFG at two tangent points (see Visualization 1). (b) Diagram of phase-matching condition at the situation where the two SF rings are tangent. (c) Scheme of complete phase-matching by total reflection under the anomalous-like dispersion condition.
    (Color online) (a) External incident angle depending on the pump wavelength at the phase-matching condition. (b) Measured pump power from 1420 to 1480 nm; the red rhombuses are relative conversion efficiency calculated based on the power of the pump wave and the SFG.
    Fig. 5. (Color online) (a) External incident angle depending on the pump wavelength at the phase-matching condition. (b) Measured pump power from 1420 to 1480 nm; the red rhombuses are relative conversion efficiency calculated based on the power of the pump wave and the SFG.
    Wanxu Zhao, Xiaohui Zhao, Yuanlin Zheng, Huaijin Ren, Xianfeng Chen. Conical sum-frequency generation in a bulk anomalous-like dispersion medium[J]. Chinese Optics Letters, 2017, 15(12): 121901
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