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Optical fiber devices: Novel fiber lasers and image amplifier.

机译:光纤设备:新型光纤激光器和图像放大器。

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摘要

Three fiber based optical devices: all phosphate glass fiber laser, single hybrid mode fiber laser, and fiber image amplifier, were investigated in this dissertation.; Phosphate fiber Bragg grating (FBG) is desired to improve performance of recently developed high power single frequency lasers that were based on highly rare earth ion doped phosphate fibers because these lasers were fabricated with silica FBGs that have incompatible properties with standard phosphate glasses. Since standard phosphate glasses are not photosensitive, Ge-doped phosphate glasses were fabricated and their UV-photosensitivity was examined. A phosphate fiber that has Ge-doped core showed UV index changes more than ∼1.1 x 10-3. An all-phosphate fiber laser was also demonstrated with the Ge-doped phosphate FBG.; Single hybrid mode fiber laser that involves a large area mode in cavity formation was demonstrated. The fiber laser consists of an Er-doped active fiber and two FBGs. One FBG was a core-cladding mode converter, and the other FBG was a narrowband high reflector that selects the lasing wavelength and mode. This approach for designing a laser cavity provides a much larger mode area than conventional large-mode-area step-index fibers, and is supposed to suitable for a high power fiber laser. Also this configuration allows us to make novel ring-like cavities and sensor devices that consist of higher mode of optical fibers.; Image amplifier based on a highly rare earth ion doped phosphate fiber is a unique approach to overcome weakness of widely used image intensifiers that lose a lot of information in the image, such as spectral distribution, polarization, and phase. Image amplification with a 19-pixel optical image amplifier array based on high gain per unit length Yb3+-doped phosphate glass optical fiber was demonstrated. A 10-cm of the 19-pixel fiber image amplifier provides spatially uniform image amplification with gain of 30 dB/pixel or more. This image amplifier responds quickly to changes in the image position---with potential for GHz-level or higher frame rates. This unique approach for image amplification offers low noise, high gain, and wide field of view in a compact fiber-based device.
机译:本文研究了三种基于光纤的光学器件:全磷酸盐玻璃光纤激光器,单混合模式光纤激光器和光纤图像放大器。磷酸盐光纤布拉格光栅(FBG)希望提高最近开发的基于高稀土离子掺杂磷酸盐纤维的高功率单频激光器的性能,因为这些激光器是由二氧化硅FBG制成的,这些二氧化硅FBG具有与标准磷酸盐玻璃不兼容的性能。由于标准的磷酸盐玻璃不是光敏的,因此制造了掺Ge的磷酸盐玻璃并检查了它们的紫外光敏性。具有Ge掺杂纤芯的磷酸盐纤维显示出的紫外线指数变化大于〜1.1 x 10-3。掺Ge的磷酸盐FBG也证明了全磷酸盐光纤激光器。演示了在腔形成中涉及大面积模式的单混合模式光纤激光器。光纤激光器由掺Er的有源光纤和两个FBG组成。一个FBG是一个核心包层模式转换器,另一个FBG是一个窄带高反射器,可以选择激光波长和模式。这种设计激光腔的方法提供了比常规大模式面积阶跃折射率光纤大得多的模式面积,并被认为适用于高功率光纤激光器。同样,这种配置使我们能够制造由更高模数的光纤组成的新颖的环形腔和传感器装置。基于高度稀土离子掺杂的磷酸盐纤维的图像放大器是一种独特的方法,可以克服广泛使用的图像增强器的缺点,这些图像增强器会丢失图像中的许多信息,例如光谱分布,偏振和相位。对基于每单位长度的Yb3 +掺杂的磷酸盐玻璃光纤的高增益的19像素光学图像放大器阵列的图像放大进行了说明。 10厘米的19像素光纤图像放大器可提供30 dB /像素或更高增益的空间均匀图像放大。该图像放大器对图像位置的变化做出快速响应-具有潜在的GHz级或更高帧频的潜力。这种独特的图像放大方法可在紧凑的基于光纤的设备中提供低噪声,高增益和宽视野。

著录项

  • 作者

    Suzuki, Shigeru.;

  • 作者单位

    The University of Arizona.$bOptical Sciences.;

  • 授予单位 The University of Arizona.$bOptical Sciences.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 111 p.
  • 总页数 111
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

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