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Dispersion measurements of fiber-optic components and applications of a novel tunable filter for optical communications

机译:光纤组件的色散测量以及新型可调谐滤波器在光通信中的应用

摘要

Optical communications has experienced a rapid development during the last decade. More bandwidth can be acquired by decreasing the spacing of the optical channels or by increasing the data rate. Characterization of the optical components and active monitoring of the network calls for accurate measurement methods. The objective of this thesis is to investigate and develop measurement methods and instruments for measuring important parameters of the components used in optical communications.Chromatic dispersion of optical fibers and frequency chirp of the laser transmitters set limits for the data rate and transmission distance. Measurements of dispersion have traditionally been performed using a phase-shift method. When high modulation frequencies are applied to achieve high resolution an error could be introduced. In this thesis, the measurement accuracy of this method is analyzed in detail and a novel method for estimating the accuracy and correcting the measurement result is developed.A Fabry-Perot interferometer finds numerous applications in many fields of optics. In this thesis, tunable Fabry-Perot etalon filters made of silicon were developed and several applications for these devices are demonstrated. A new device for measurements of time-resolved frequency chirp of directly modulated laser diodes in real time is developed. Interaction between the dispersion and frequency chirp limits the use of directly modulated lasers in long-haul optical links.Another application is monitoring of the wavelength of optical transmitters. The wavelength of the laser diode may shift due to aging and active monitoring and controlling of the wavelength is required. In addition, the filter improves the performance of the directly modulated transmitter by temporal reshaping of the pulses. The filter is also applied in reducing the frequency chirp of gain-switched pulses generated with a diode laser. These pulses can then be made transform limited and can for example be used in generation of optical solitons.Finally, the etalon is employed in realization of a compact wavelength reference for calibration of the wavelength scale of the optical spectrum analyzers and wavemeters. The transmission spectrum of the etalon consists of equidistant fringes. Each of these fringes can be applied as an accurate reference over a large wavelength range once the temperature of the filter is stabilized. This reference was developed to be automatic and it has an adequate accuracy for performing calibrations of field instruments.
机译:在过去的十年中,光通信经历了快速的发展。可以通过减小光通道的间隔或通过增加数据速率来获取更多带宽。光学组件的表征和网络的主动监控需要精确的测量方法。本文的目的是研究和开发用于测量光通信中组件重要参数的测量方法和仪器。光纤的色散和激光发射器的频率chi设定了数据速率和传输距离的极限。传统上,色散的测量是使用相移法进行的。当应用高调制频率以实现高分辨率时,可能会引入误差。本文对这种方法的测量精度进行了详细的分析,提出了一种估计精度和校正测量结果的新方法。法布里-珀罗干涉仪在光学的许多领域都有着广泛的应用。本文研究了由硅制成的可调谐法布里-珀罗标准具滤波器,并展示了这些器件的几种应用。开发了一种用于实时测量直接调制激光二极管的时间分辨频率chi的新设备。色散和频率线性调频脉冲之间的相互作用限制了在长距离光链路中直接调制激光器的使用,另一个应用是监视光发射机的波长。激光二极管的波长可能会因老化而发生偏移,因此需要对波长进行主动监视和控制。另外,该滤波器通过对脉冲进行时间整形来改善直接调制发射机的性能。该滤波器还用于降低二极管激光器产生的增益切换脉冲的频率线性调频。然后可以对这些脉冲进行变换限制,并可以例如在生成光学孤子中使用。最后,使用标准具实现紧凑的波长参考,以校准光谱分析仪和波长计的波长范围。标准具的透射光谱由等距条纹组成。一旦滤波器的温度稳定,这些条纹中的每一个都可以用作大波长范围内的精确参考。该参考被开发为自动的,并且具有足够的精度来执行现场仪器的校准。

著录项

  • 作者

    Niemi Tapio;

  • 作者单位
  • 年度 2002
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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