Configuration to improve second-harmonic-generation conversion efficiency
Yong Bi, Ruining Li, Zhipei Sun, Ying Zhang, Xuechun Lin, Hongbo Zhang, Zuyan Xu
Abstract
Yong Bi, Ruining Li, Zhipei Sun, Ying Zhang, Xuechun Lin, Hongbo Zhang, Zuyan Xu
Abstract
The dependence of second-harmonic-generation (SHG) conversion efficiency on the intercrystal phase shift between two nonlinear crystals is analyzed with heuristic theory, and a novel scheme for SHG with two cascaded nonlinear crystals and a polarization modulator is proposed. More than 30 W output power is obtained experimentally at 532 nm with 70% external doubling efficiency. To the best of our knowledge, this is the highest conversion efficiency obtained with LiB3O5 crystal external frequency doubling. This scheme provides a simple and effective method for improving second-harmonic conversion efficiency.
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The dependence of second-harmonic-generation (SHG) conversion efficiency on the intercrystal phase shift between two nonlinear crystals is analyzed with heuristic theory, and a novel scheme for SHG with two cascaded nonlinear crystals and a polarization modulator is proposed. More than 30 W output power is obtained experimentally at 532 nm with 70% external doubling efficiency. To the best of our knowledge, this is the highest conversion efficiency obtained with LiB3O5 crystal external frequency doubling. This scheme provides a simple and effective method for improving second-harmonic conversion efficiency.
Key concepts: Energy conversion efficiency, Second-harmonic generation, Optics, Nonlinear optics, Polarization (electrochemistry), Materials science, Sum-frequency generation, Nonlinear system