Collection Of theses on high power laser and plasma physics, 2015, 13 (1): 106, Published Online: May. 27, 2017  

Normal, degenerated, and anomalous-dispersion-like Cerenkov sum-frequency generation in one nonlinear medium

Author Affiliations
1 Department of Physics and Astronomy, Shanghai Jiao Tong University, Shanghai 200240, China
2 Shanghai Institute of Laser Plasma, Shanghai, China
3 Key Laboratory for Laser Plasma (Ministry of Education), IFSA Collaborative Innovation Center, Shanghai Jiao Tong University, Shanghai 200240, China
4 e-mail: 5040729023@sjtu.edu.cn
5 China Academy of Engineering Physics, Mianyang, Sichuan 621900, China
Figures & Tables

Fig. 1. (a) Layout of experimental setup. λ1=800nm, λ2=1000nm1600nm. (b) Theoretical curves of the wave vector relationship of the interaction wave beams, where the incidences are both set to be ordinary polarized and the SFG extraordinary polarized.

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Fig. 2. (a)–(c) Illustrations of the typical patterns with the wavelength of incidence F2 at 1250 nm, 1340 nm, and 1450 nm, respectively. (d)–(f) Schematics of the phase-match conditions of the Cerenkov sum-frequency generation (CSFG) in normal dispersion, degenerated, and anomalous dispersion stage, respectively.

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Fig. 3. (a) Experimental data (red spots) and simulation (solid line) of the external angle of the Cerenkov generation as a function of incident wavelength. (b) Experimental data (green spots) and simulation (solid line) of the incident angle at degenerated stage as a function of incident wavelength.

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Fig. 4. (a) Experimental pattern of the two sets of multiple conical harmonic generations. (b), (c) Phase-matching geometries for conical SFG 1 and conical SFG 2, respectively. Each incidence mixes with the scattered lights of the other incidence, giving birth to multiple scattering rings with different radii and center locations.

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Ning An, Yuanlin Zheng, Huaijin Ren, Xiaohui Zhao, Xuewei Deng, Xianfeng Chen. Normal, degenerated, and anomalous-dispersion-like Cerenkov sum-frequency generation in one nonlinear medium[J]. Collection Of theses on high power laser and plasma physics, 2015, 13(1): 106.

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