首页> 外文会议>Solid State Lasers XXVIII: Technology and Devices >Laser operation of Nd~(3+)-doped silicates (Gd,Y)_2SiO_5, (Lu,Y)_2SiO_5 and Lu_2SiO_5 at~1.36 μm
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Laser operation of Nd~(3+)-doped silicates (Gd,Y)_2SiO_5, (Lu,Y)_2SiO_5 and Lu_2SiO_5 at~1.36 μm

机译:Nd〜(3+)掺杂硅酸盐(Gd,Y)_2SiO_5,(Lu,Y)_2SiO_5和Lu_2SiO_5的激光操作在〜1.36μm下进行

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摘要

Monoclinic rare-earth silicates, RE_2SiO_5, are the promising hosts for Nd3+ doping. We have studied Nd:(Gd,Y)_2SiO_5,Nd:(Lu,Y)_2SiO_5 and Nd:Lu_2SiO_5 crystals for their suitability for ~1.3 μm (~4F_(3/2) → ~4I_(13/2)) lasers. The absorption andstimulated-emission cross-section spectra were determined. The continuous-wave laser operation was studied in acompact plano-plano cavity. A b-cut Nd:(Gd,Y)_2SiO_5 crystal generated up to 0.75 W of linearly polarized emission at1360.7 nm with a slope efficiency η of 16.9%. For the same crystal operated at the ~4F_(3/2) → ~4I_(11/2) transition, the outputpower reached 3.84 W at 1077.4 nm with η = 54.5% with a threshold of only 80 mW.
机译:单斜晶系稀土硅酸盐RE_2SiO_5是Nd3 +掺杂的有希望的主体。我们研究了Nd:(Gd,Y)_2SiO_5,\ r \ nNd:(Lu,Y)_2SiO_5和Nd:Lu_2SiO_5晶体的适用性〜1.3μm(〜4F_(3/2)→〜4I_(13/2) ))激光。测定吸收和激发发射的横截面光谱。在紧凑的平面内腔中研究了连续波激光操作。 b切Nd:(Gd,Y)_2SiO_5晶体在\ r \ n1360.7 nm处产生高达0.75 W的线性偏振发射,斜率η为16.9%。对于在〜4F_(3/2)→〜4I_(11/2)跃迁下运行的同一晶体,在1077.4 nm处输出功率达到3.84 W,η= 54.5%,阈值仅为80 mW。

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  • 来源
    《Solid State Lasers XXVIII: Technology and Devices》|2019年|108961T.1-108961T.8|共8页
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    Universitat Rovira i Virgili, Departament Química Física i Inorgànica, Física i Cristal·lografia de Materials i Nanomaterials (FiCMA-FiCNA)-EMaS, Campus Sescelades, E-43007, Tarragona, Spain State Key Laboratory of Crystal Materials and Institute of Crystal Materials, Shandong University, 250100 Jinan, China;

    ITMO University, Kronverkskiy pr., 49, 197101 Saint-Petersburg, Russia;

    Universitat Rovira i Virgili, Departament Química Física i Inorgànica, Física i Cristal·lografia de Materials i Nanomaterials (FiCMA-FiCNA)-EMaS, Campus Sescelades, E-43007, Tarragona, Spain;

    Universitat Rovira i Virgili, Departament Química Física i Inorgànica, Física i Cristal·lografia de Materials i Nanomaterials (FiCMA-FiCNA)-EMaS, Campus Sescelades, E-43007, Tarragona, Spain;

    Universitat Rovira i Virgili, Departament Química Física i Inorgànica, Física i Cristal·lografia de Materials i Nanomaterials (FiCMA-FiCNA)-EMaS, Campus Sescelades, E-43007, Tarragona, Spain;

    Universitat Rovira i Virgili, Departament Química Física i Inorgànica, Física i Cristal·lografia de Materials i Nanomaterials (FiCMA-FiCNA)-EMaS, Campus Sescelades, E-43007, Tarragona, Spain;

    Max Born Institute for Nonlinear Optics and Short Pulse Spectroscopy, Max-Born-Str. 2a, D-12489 Berlin, Germany;

    Max Born Institute for Nonlinear Optics and Short Pulse Spectroscopy, Max-Born-Str. 2a, D-12489 Berlin, Germany;

    State Key Laboratory of Crystal Materials and Institute of Crystal Materials, Shandong University, 250100 Jinan, China;

    State Key Laboratory of Crystal Materials and Institute of Crystal Materials, Shandong University, 250100 Jinan, China;

    School of Physics Science and Engineering, Institute for Advanced Study, Tongji University, 200092 Shanghai, China;

    Jiangsu Key Laboratory of Advanced Laser Materials and Devices, School of Physics and Electronic Engineering, Jiangsu Normal University, 221116 Xuzhou, China;

    Department of Electrical and Computer Engineering, University of Manitoba, 75A Chancellors Circle, Winnipeg, MB, R3T 5V6, Canada a.major@umanitoba.ca;

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  • 入库时间 2022-08-26 14:33:01

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