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掺钕透明碲酸盐陶瓷体激光器。

Nd-doped transparent tellurite ceramics bulk lasers.

作者信息

Dolhen Morgane, Tanaka Masayuki, Couderc Vincent, Chenu Sébastien, Delaizir Gaëlle, Hayakawa Tomokatsu, Cornette Julie, Brisset François, Colas Maggy, Thomas Philippe, Duclère Jean-René

机构信息

Univ. Limoges, CNRS, IRCER, UMR 7315, F-87000, Limoges, France.

Field of Advanced Ceramics, Department of Life Science and Applied Chemistry, Nagoya Institute of Technology, Gokiso, Showa, Nagoya, 466-8555, Japan.

出版信息

Sci Rep. 2018 Mar 15;8(1):4640. doi: 10.1038/s41598-018-22922-5.

Abstract

We report on the laser emission of the polycrystalline ceramic obtained from the full and congruent crystallization of the parent glass 1Nd:75TeO-12.5BiO-12.5NbO composition. In particular, the current work underlines the importance of carefully controlling the heat treatment in order to solely crystallize the BiNbTeO cubic phase and consequently avoid the formation of the BiNbTeO orthorhombic phase that would be detrimental for optical purpose. The structure, microstructure and photoluminescence properties of the resulting transparent tellurite ceramics are characterized. The continuous-wave and gain-switching laser performances reveal that the emission remains perfectly single transversal mode in the range of pump powers explored. The maximum output power achieved was ~28.5 mW, for a pump power threshold of ~67 mW, and with associated efficiency and slope efficiency of ~22.5% and ~50%, respectively. These data definitely stand among the best results obtained so far for bulk laser tellurite materials and thus demonstrate the potential of such polycrystalline transparent ceramics as optically active materials. Finally, the laser emission characteristics in pulsed regime, at low and high repetition rates, are also provided: more than 6.5 W of peak power at a repetition rate of 728 kHz can be obtained.

摘要

我们报道了由母玻璃1Nd:75TeO-12.5BiO-12.5NbO成分完全且一致结晶得到的多晶陶瓷的激光发射。特别地,当前工作强调了仔细控制热处理的重要性,以便仅使BiNbTeO立方相结晶,并因此避免形成对光学用途不利的BiNbTeO正交相。对所得透明碲酸盐陶瓷的结构、微观结构和光致发光特性进行了表征。连续波和增益开关激光性能表明,在所探索的泵浦功率范围内,发射保持完美的单横向模式。实现的最大输出功率约为28.5 mW,泵浦功率阈值约为67 mW,相关效率和斜率效率分别约为22.5%和50%。这些数据无疑是迄今为止块状激光碲酸盐材料所取得的最佳结果之一,从而证明了这种多晶透明陶瓷作为光学活性材料的潜力。最后,还提供了低重复率和高重复率脉冲状态下的激光发射特性:在728 kHz的重复率下可获得超过6.5 W的峰值功率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6eb2/5854583/575caa1e6771/41598_2018_22922_Fig1_HTML.jpg

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