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In-fiber optical devices based on D-fiber.

机译:基于D光纤的光纤内光学设备。

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摘要

This dissertation presents the fabrication and analysis of in-fiber devices based on elliptical core D-shaped optical fiber. Devices created inside optical fibers are attractive for a variety of reasons including low loss, high efficiency, self-alignment, light weight, multiplexibility, and resistance to electromagnetic interference. This work details how D-fiber can be used as a platform for a variety of devices and describes the creation and performance of two of these devices: an in-fiber polymer waveguide and a surface relief fiber Bragg grating.; In D-fiber the core is very close to the flat side of the 'D' shape. This proximity allows access to the fields in the fiber core by removal of the cladding above the core. The D-fiber we use also has an elliptical core, allowing for the creation of polarimetric devices. This work describes two different etch processes using hydrofluoric acid (HF) to remove the fiber cladding and core. For the creation of devices in the fiber core, the core is partially removed and replaced with another material possessing the required optical properties. For devices which interact with the evanescent field, cladding removal is terminated before acid breaches the core.; Etching fibers prepares them for use in the creation of in-fiber devices. Materials are placed into the groove left when the core of a fiber is partially removed to form a hybrid waveguide in which light is guided by both the leftover core and the inserted material. These in-fiber polymer waveguides have insertion loss less than 2 dB and can potentially be the basis for a number of electro-optic devices or sensors. A polarimetric temperature sensor demonstrates the feasibility of the core replacement method.; This work also describes the creation of a surface relief fiber Bragg gratings (SR-FBGs) in the cladding above the core of the fiber. Because it is etched into the surface topography of the fiber, a SR-FBG can operate at much higher temperatures than a standard FBG, up to at least 1100°C. The performance of a SR-FBG is demonstrated in temperature sensing at high temperatures, and as a strain sensor.
机译:本文提出了基于椭圆芯D形光纤的光纤内器件的制造与分析。在光纤内部创建的设备之所以吸引人,是因为多种原因,包括低损耗,高效率,自对准,轻量,可复用性和抗电磁干扰性。这项工作详细介绍了如何将D-光纤用作各种设备的平台,并描述了其中两种设备的创建和性能:光纤内聚合物波导和表面起伏光纤布拉格光栅。在D纤维中,纤芯非常靠近“ D”形的扁平面。通过去除纤芯上方的包层,这种接近允许进入纤芯中的场。我们使用的D光纤也有一个椭圆形的纤芯,允许创建极化设备。这项工作描述了使用氢氟酸(HF)去除光纤包层和纤芯的两种不同蚀刻工艺。为了在光纤芯中创建设备,将芯部分除去,并用另一种具有所需光学特性的材料替换。对于与the逝场相互作用的器件,在酸破坏芯之前终止包层的去除。蚀刻纤维使它们准备好用于创建纤维内设备。当部分除去光纤的纤芯以形成混合波导时,将材料放入左侧的凹槽中,其中剩余的纤芯和插入的材料均引导光。这些光纤内聚合物波导的插入损耗小于2 dB,并可能成为许多电光设备或传感器的基础。极化温度传感器证明了更换磁芯方法的可行性。这项工作还描述了在光纤纤芯上方的包层中创建表面浮雕光纤布拉格光栅(SR-FBG)的方法。由于SR-FBG被蚀刻到纤维的表面形貌中,因此它的工作温度比标准FBG高得多,最高可达1100°C。 SR-FBG的性能在高温下的温度感测中以及作为应变传感器得到了证明。

著录项

  • 作者

    Smith, Kevin H.;

  • 作者单位

    Brigham Young University.;

  • 授予单位 Brigham Young University.;
  • 学科 Engineering Electronics and Electrical.; Physics Optics.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 144 p.
  • 总页数 144
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;光学;
  • 关键词

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