Lai Chien-Chih, Lo Chia-Yao, Nguyen Duc Huy, Huang Jian-Zhi, Tsai Wan-Shao, Ma Yuan-Ron
Opt Express. 2016 Sep 5;24(18):20089-106. doi: 10.1364/OE.24.020089.
We demonstrate direct evidence for the first realization of atomically smooth sapphire crystalline fiber cores with a surface variation of only ~1.9 Å. The hybrid glass-clad crystalline cores were grown by a laser-based fiber drawing technique. Because of the improvement in crystal fiber quality, we were able, for the first time, to comprehensively and quantitatively elucidate the correlation between fiber nanostructure and optical loss. We also experimentally demonstrated that high-temperature treatment has a significant impact on defect relaxation and promotes excellent crystallinity, and hence enables low-loss optical wave guiding. The experimentally measured propagation losses in the order of 0.01-0.1 dB/cm are the lowest ever reported among conventional Ti:sapphire channel waveguides and ultrafast-laser-inscribed waveguides, and agree well with the theory. Through experiments and numerical calculation, we have demonstrated that low threshold and high efficiency of Ti:sapphire crystal fiber lasers are possible with the atomic-level roughness, low-loss propagation, and high crystallinity of the Ti:sapphire crystalline core.
我们首次展示了原子级光滑蓝宝石晶体光纤纤芯的直接证据,其表面变化仅约1.9埃。这种混合玻璃包覆的晶体纤芯是通过基于激光的光纤拉丝技术生长而成的。由于晶体光纤质量的提高,我们首次能够全面且定量地阐明光纤纳米结构与光损耗之间的相关性。我们还通过实验证明,高温处理对缺陷弛豫有显著影响,并能促进优异的结晶度,从而实现低损耗光波导。实验测量的传播损耗在0.01 - 0.1 dB/cm量级,是传统钛宝石通道波导和超快激光写入波导中报道过的最低值,并且与理论结果吻合良好。通过实验和数值计算,我们证明了由于钛宝石晶体纤芯具有原子级粗糙度、低损耗传播和高结晶度,钛宝石晶体光纤激光器实现低阈值和高效率是可能的。