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Toward Single-Mode Active Crystal Fibers for Next-Generation High-Power Fiber Devices

机译:面向下一代大功率光纤设备的单模有源晶体光纤

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We report what we believe to be the first demonstration of a facile approach with controlled geometry for the production of crystal-core ceramic-clad hybrid fibers for scaling fiber devices to high average powers. The process consists of dip coating a solution of polycrystalline alumina onto a high-crystallinity 40-μm-diameter Ti:sapphire single-crystalline core followed by thermal treatments. Comparison of the measured refractive index with high-resolution transmission electron microscopy reveals that a Ca/Si-rich intragranular layer is precipitated at grain boundaries by impurity segregation and liquid-phase formation due to the relief of misfit strain energy in the Al2O3 matrix, slightly perturbing the refractive index and hence the optical properties. Additionally, electron backscatter diffractions supply further evidence that the Ti:sapphire single-crystalline core provides the template for growth into a sacrificial polycrystalline cladding, bringing the core and cladding into a direct bond. The thus-prepared doped crystal core with the undoped crystal cladding was achieved through the abnormal grain-growth process. The presented results provide a general guideline both for controlling crystal growth and for the performance of hybrid materials and provides insights into how one might design single-mode high-power crystal fiber devices.
机译:我们报告了我们认为是可控几何形状的简便方法的首个演示,该方法可用于生产晶体芯陶瓷包层混合光纤,以将光纤设备缩放至高平均功率。该工艺包括将多晶氧化铝溶液浸涂到直径为40μm的Ti:蓝宝石单晶核上,然后进行热处理。将测得的折射率与高分辨率透射电子显微镜进行比较发现,由于Al2O3基体中失配应变能的释放,通过杂质偏析和液相形成,在晶界析出了富含Ca / Si的晶内层。扰动折射率,从而扰乱光学性能。此外,电子背散射衍射提供了进一步的证据,表明Ti:蓝宝石单晶核提供了生长为牺牲性多晶覆层的模板,从而使核和覆层形成直接键合。通过异常晶粒生长过程获得了如此制备的具有未掺杂的晶体包层的掺杂的晶体核。提出的结果为控制晶体生长和混合材料的性能提供了一般指导,并提供了有关如何设计单模高功率晶体光纤器件的见识。

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