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A DIODE LASER SOURCE FOR DIAL METHANE MEASUREMENTS IN COAL MINES.

机译:用于煤矿中甲烷甲烷测量的二极管激光源。

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摘要

The research reported in this dissertation was directed toward the development of a coal mine methanometer source. The project encompassed two tasks. The first was a study conducted to determine if room-temperature injection lasers could be used as the source for a DIAL methanometer for coal mone applications. As part of that study, prior DIAL measurements of methane were reviewed and the measurement technique was explored in a general way. The absorption spectroscopy of methane was then examined in detail and found to contain an appropriate absorption feature near a wavelength of 1.65 (mu)m provided the spectral width of the light source was approximately 0.2 cm('-1). As an additional part of the study the operating characteristics of broad area high optical output InGaAs/InP injection lasers were examined. A detailed calculation of the requirements for a diode laser DIAL measurement of methane in a coal mine was then performed. By comparing the observed diode laser properties with the DIAL requirements, it was found that broad area InGaAs/InP injection lasers were suitable in most respects for coal methane measurements. The exception was the diode laser spectral bandwidth. It was found to be some 400 times too large.;The second task was the design and fabrication of an external grating cavity to reduce the bandwidth of the injection lasers. The optical design of an off-axis parabolic mirror grating cavity was developed. Geometric optics was used to determine the physical parameters for an external cavity which would produce the desired spectral bandwidth of 0.2 cm('-1). The fabrication and performance of this external resonator source is described. Measurement of the source linewidth showed it to be two to three times larger than the design value. An explanation of the resultant bandwidth based on coupled mode theory is presented. In summary, an external grating cavity for a diode laser was designed, assembled, and tested. It was shown to approximate the optical properties required for a DIAL coal mine methane measurement.
机译:论文的研究方向是针对煤矿瓦斯计源的开发。该项目包括两项任务。第一项研究是确定室温注入激光是否可以用作煤矿用DIAL甲烷仪的光源。作为该研究的一部分,对以前的甲烷DIAL测量进行了回顾,并以一般方式探索了测量技术。然后详细检查甲烷的吸收光谱,发现在光源的光谱宽度约为0.2 cm('-1)的情况下,在1.65μm的波长附近具有适当的吸收特征。作为研究的另一部分,研究了广域高光输出InGaAs / InP注入激光器的工作特性。然后,对煤矿用甲烷的二极管激光DIAL测量的要求进行了详细计算。通过将观察到的二极管激光器性能与DIAL要求进行比较,发现在大多数方面,大面积InGaAs / InP注入激光器都适合于甲烷的测量。例外是二极管激光器的光谱带宽。发现它太大了约400倍。第二个任务是设计和制造外部光栅腔,以减小注入激光器的带宽。提出了离轴抛物面镜光栅腔的光学设计。几何光学用于确定外腔的物理参数,该物理参数将产生所需的0.2 cm('-1)光谱带宽。描述了该外部谐振器源的制造和性能。对源线宽的测量表明,它比设计值大两到三倍。给出了基于耦合模式理论的结果带宽的解释。总而言之,设计,组装和测试了用于二极管激光器的外部光栅腔。它被证明近似于DIAL煤矿甲烷测量所需的光学性能。

著录项

  • 作者

    DEFREEZ, RICHARD K.;

  • 作者单位

    Oregon Graduate Institute of Science and Technology.;

  • 授予单位 Oregon Graduate Institute of Science and Technology.;
  • 学科 Physics Atmospheric Science.
  • 学位 Ph.D.
  • 年度 1985
  • 页码 189 p.
  • 总页数 189
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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