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首页> 外文期刊>RSC Advances >The characteristics of high-quality Yb:YAG single crystal fibers grown by a LHPG method and the effects of their discoloration
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The characteristics of high-quality Yb:YAG single crystal fibers grown by a LHPG method and the effects of their discoloration

机译:LHPG法生长的高质量Yb:YAG单晶纤维的特性及其变色的影响

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摘要

Single crystal fibers (SCFs), especially ytterbium (Yb) doped crystal fibers, have great potential in the field of high-power lasers. Colorless Yb:YAG single crystal fibers were fabricated using a laser heated pedestal growth (LHPG) method with a diameter fluctuation of less than 2% and a length to diameter ratio greater than 320?:?1. An abnormal color issue exists with respect to Yb:YAG crystals. The origin of coloration was studied via density functional theory, single-crystal X-ray diffraction, XPS and Raman spectroscopy and it was confirmed that the cyan coloration of Yb:YAG crystals is due to oxygen vacancies. Yb:YAG SCFs prepared via the LHPG method could avoid this type of defect due to the large specific surface area and melt convection caused by surface tension. The fundamental properties of the cyan Yb:YAG crystal source rod and colorless Yb:YAG SCFs were systematically investigated. The colorless Yb:YAG SCFs have higher infrared transmittance and thermal conductivity. The distributions of Yb ~(3+) along the radial and axial directions were also measured. Meanwhile we demonstrated the propagation loss and a fiber laser using the colorless Yb:YAG SCFs, obtaining a minimum loss coefficient of 0.008 dB cm ~(?1) and a maximum continuous-wave (CW) output power of 3.62 W. The colorless Yb:YAG SCFs with good thermal conductivity, low propagation loss, wide transparency and uniform ion distribution show promise for acting as the host material in single-mode lasers.
机译:单晶纤维(SCF),尤其是掺((Yb)的晶体纤维,在高功率激光器领域具有巨大的潜力。 Yb:YAG无色单晶纤维是使用激光加热的基座生长(LHPG)方法制造的,其直径波动小于2%,长径比大于320?:?1。 Yb:YAG晶体存在异常颜色问题。通过密度泛函理论,单晶X射线衍射,XPS和拉曼光谱研究了着色的起源,并证实Yb:YAG晶体的青色着色是由于氧空位引起的。通过LHPG方法制备的Yb:YAG SCF可以避免这种类型的缺陷,因为它具有较大的比表面积和由表面张力引起的熔体对流。系统地研究了青色Yb:YAG晶体源棒和无色Yb:YAG SCF的基本性能。无色Yb:YAG SCF具有更高的红外透射率和导热性。还测量了Yb〜(3+)沿径向和轴向的分布。同时,我们演示了使用无色Yb:YAG SCF的传播损耗和光纤激光器,获得的最小损耗系数为0.008 dB cm〜(?1),最大连续波(CW)输出功率为3.62W。无色Yb :YAG SCF具有良好的导热性,低的传播损耗,宽的透明度和均匀的离子分布,有望在单模激光器中用作基质材料。

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