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Laser direct write optical waveguides for optical interconnection and optical isolation.

机译:激光直接写入光波导,用于光学互连和光学隔离。

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摘要

Optical channel waveguides are essential in integrated optics and lightwave technology. Low optical waveguide propagation loss, ease in waveguide fabrication, flexible waveguide patterning, and excellent waveguide stability have been important goals of recent research and development. One of the focuses of this dissertation is the demonstration of maskless non-lithographic fabrication of low-loss optical waveguides on high-energy-beam sensitive glass and on new laser writable photopolymer materials. The demonstrated fabrication techniques offer fast waveguide device prototyping, high waveguide production yield rate, and flexibility in waveguide pattern modification.; Both the waveguide material properties and the waveguide device parameters have been examined in detail. The index of refraction and propagation loss of the waveguides at the communication wavelength of 1550 nm have been experimentally measured. The fabricated waveguides were found to be low loss, from -0.25 to -0.67 dB cm 1, single mode at 1550 nm wavelength, and stable for a long period of time (more than 5 months of observation).; Because of the significant developments on the low loss waveguide fabrication, its potential application to the optical interconnection on the electronic circuit board has been examined. A laser writable polymer waveguide is used to interconnect a laser transmitter array and a photodetector receiver array. The laser direct writing of channel waveguides completes the optical interconnect lines from the laser array to the photodetector array. The laser writing is a flexible packaging process with its flexibility comparable to the electronic wire bonding used extensively in the electronic packaging industry. Also, the laser writing has been used to realize optical waveguide fan-out devices with real-time repair features not available by other fabrication processes.; Besides the material and fabrication technology development, this dissertation research has also addressed a novel device design and its realization. Optical isolators are required device components for the optical fiber communication applications to reduce optical return beams to the laser transmitters since the return beams to the laser cavities can result in laser stability problems. Conventionally, the optical isolators are fabricated by using a Faraday polarization rotator with an external permanent magnet. Although such optical isolators have demonstrated excellent performance and low cost commercial devices are available, the optical isolators are not capable of packaging with high-density laser array chips. (Abstract shortened by UMI.)
机译:光通道波导在集成光学和光波技术中至关重要。低的光波导传播损耗,易于制造的波导,灵活的波导图案以及出色的波导稳定性已成为近期研究和开发的重要目标。本文的重点之一是在高能光束敏感玻璃和新型激光可写光敏聚合物材料上无掩模非光刻制造低损耗光波导的演示。所展示的制造技术提供了快速的波导器件原型制造,高的波导生产率,以及波导图案修改的灵活性。已经详细检查了波导材料特性和波导装置参数。已经通过实验测量了在1550 nm的通信波长下波导的折射率和传播损耗。所制造的波导被发现具有低损耗,从-0.25到-0.67 dB cm 1,在1550 nm波长处为单模,并且长期稳定(超过5个月的观察)。由于低损耗波导制造技术的重大发展,已经研究了其在电子电路板上光学互连的潜在应用。激光可写聚合物波导用于互连激光发射器阵列和光电探测器接收器阵列。通道波导的激光直接写入完成了从激光器阵列到光电探测器阵列的光学互连线。激光写入是一种灵活的包装工艺,其灵活性可与电子包装行业广泛使用的电子引线键合相媲美。同样,激光写入已被用于实现具有其他制造工艺所不具备的实时修复功能的光波导扇出设备。除了材料和制造技术的发展外,本论文还研究了一种新颖的器件设计及其实现。光隔离器是光纤通信应用所需的设备组件,以减少到激光发射器的光返回光束,因为到激光腔的返回光束会导致激光器稳定性问题。常规地,通过使用具有外部永磁体的法拉第偏振旋转器来制造光学隔离器。尽管已经证明这种光学隔离器具有优异的性能并且可以使用低成本的商用设备,但是该光学隔离器不能与高密度激光阵列芯片一起封装。 (摘要由UMI缩短。)

著录项

  • 作者

    Srisanit, Namkhun.;

  • 作者单位

    University of Miami.;

  • 授予单位 University of Miami.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 152 p.
  • 总页数 152
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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