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Drawing of single-crystal and glass-clad lithium tantalate fibers by the laser-heated pedestal growth method

机译:用激光加热的基座生长法拉伸单晶和玻璃包覆的钽酸锂纤维

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摘要

[[abstract]]Lithium tantalate (LT) single-crystalline fibers with various growth conditions were obtained using the laser-heated pedestal growth (LHPG) method. The fibers can be produced with a diameter down to 70 µm and tens of centimetres in length by using different pulling rates. Preliminary experiments also showed that the LT fibers can be electrically poled for quasi-phase matching. To facilitate wave propagation with low loss, glass-clad LT fibers were fabricated by a co-drawing LHPG method for the first time. A vacuum apparatus was developed to eliminate the bubbles from incongruent evaporation of lithium oxide during the drawing of the glass-clad LT fibers. The glass-clad fibers are classified into two different categories by the measurements of refractive index profiles. One is a step-index fiber and the other is a graded-index fiber. Both fiber types are multimode at present, but single-mode LT fibers could be fabricated with the high-precision control of the LHPG systems.
机译:[[摘要]]使用激光加热的基座生长(LHPG)方法获得具有各种生长条件的钽酸锂(LT)单晶纤维。通过使用不同的牵拉速率,可以生产直径低至70 µm,长度数十厘米的纤维。初步实验还表明,LT纤维可以电极化以实现准相位匹配。为了促进低损耗的波传播,首次通过共绘制LHPG方法制造了玻璃包覆的LT纤维。开发了一种真空装置,以消除在包覆玻璃的LT纤维拉伸过程中氧化锂的不均匀蒸发所产生的气泡。通过测量折射率分布,将玻璃包覆纤维分为两类。一种是阶跃折射率光纤,另一种是渐变折射率光纤。目前这两种光纤都是多模光纤,但是可以通过LHPG系统的高精度控制来制造单模LT光纤。

著录项

  • 作者

    S. C. Pei;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 [[iso]]en
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