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Experimental study on a nonlinear photonics process of Er(0.5)Yb(3):FOV oxyfluoride nanophase vitroceramics

机译:Er(0.5)Yb(3):FOV氟氧化物纳米相玻璃的非线性光子过程的实验研究

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摘要

We study the nonlinear photonics of rare-earth-doped oxyfluoride nanophase vitroceramics (FOV), oxyfluorideglass (FOG), and ZBLAN fluoride glass. We found that an interesting fluorescence intensity inversion phenomenon between red and green fluorescence occurs from Er(0.5)Yb(3):FOV. The dynamic range SIGMA of the intensity inversion between red and green fluorescence of Er(0.5)Yb(3):FOV is about 5.753 X 10~(2), which is 100 to 1000 times larger than those of other materials. One of the applications of this phenomenon is double-wavelength fluorescence falsification-preventing technology, which is proved to possess the novel antifriction loss and antiscribble properties.
机译:我们研究了稀土掺杂的氟氧化物纳米相玻璃陶瓷(FOV),氟氧化物玻璃(FOG)和ZBLAN氟化物玻璃的非线性光子学。我们发现有趣的荧光强度倒置现象发生在红色和绿色荧光之间的Er(0.5)Yb(3):FOV。 Er(0.5)Yb(3):FOV的红色和绿色荧光强度反转的动态范围SIGMA约为5.753 X 10〜(2),是其他材料的100-1000倍。这种现象的应用之一是防止双波长荧光篡改的技术,该技术被证明具有新颖的减摩损耗和防涂鸦性能。

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