APPLIED LASER, Volume. 39, Issue 1, 167(2019)

Wide Temperature Adaptation Range Laser Second Harmonic Generation Based on Non-principal Plane Phase Matching in LiB3O5 Crystal

Liu Anmin*
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  • [in Chinese]
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    References(7)

    [1] [1] NIKITIN D G, BYALKOVSKIY O A, VERSHININ O I, et al.Sum frequency generation of UV laser radiation at 266 nm in LBO crystal[J].Optics Letters, 2016, 41(7): 1660-1663.

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    [3] [3] HUANG HAITAO, WANG HUI, WANG SHIQIANG, et al.Designable cascaded nonlinear optical frequency conversion integrating multiple nonlinear interactions in two KTiOAsO4 crystals[J].Optics Express, 2018, 26(2): 642-650.

    [4] [4] QASYMEH M.Phase-matched coupling and frequency conversion of terahertz waves in a nonlinear graphene waveguide[J].Journal of Lightwave Technology, 2017, 35(9): 1654-1662.

    [7] [7] HONG HAILONG, LIU QIANG, HUANG LEI, et al.Improvement and formation of UV-induced damage on LBO crystal surface during long-term high-power third-harmonic generation[J].Optics Express, 2013, 21(6): 7285-7293.

    [8] [8] CHEN C.Chinese lab grows new nonlinear optical borate crystals[J].Laser Focus World, 2002, 25(11): 129-137.

    [9] [9] KATO K.Temperature-tuned 90°phase-matching properties of LiB3O5[J].IEEE Journal of Quantum Electronics, 1994, 30(12): 2950-2952.

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    Liu Anmin. Wide Temperature Adaptation Range Laser Second Harmonic Generation Based on Non-principal Plane Phase Matching in LiB3O5 Crystal[J]. APPLIED LASER, 2019, 39(1): 167

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    Paper Information

    Received: Aug. 27, 2018

    Accepted: --

    Published Online: Apr. 16, 2019

    The Author Email: Anmin Liu (398880566@qq.com)

    DOI:10.14128/j.cnki.al.20193901.167

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