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A grating-tunable external-cavity laser based on a semiconductor laser diode

机译:基于半导体激光二极管的光栅可调谐外腔激光器

摘要

Conventional semiconductor laser diodes have found limited applications in the areas of spectroscopy and sensors due to their multimode output and relatively large linewidth. Although single mode operation is possible with the use of distributed feedback techniques this tends to be at the expense of tunability. However operation of a laser diode in an external cavity gives a tunable narrow-linewidth source ideal for spectroscopic and sensing applications.ududThis work details the design and construction of a tunable extemal-cavity semiconductor diode laser. The external reflector used is a diffraction grating operating in the Littrow geometry. The collimated first order diffracted beam is focused on the antireflection coated facet of a British Telecom Research Laboratory 1 3fjm laser chip 55cm away.ududThe cavity has been characterised using a lm focal length grating monochromator and a Fourier transform infrared spectrometer. The laser behaved in the predicted manner exhibiting a greatly reduced lasmg threshold current and single mode operation. The device showed a grating tunable range of 37nm with intermode tuning, achieved by current change, of lOGHz/mA. A device linewidth of 3 3kHz was calculated and was found to be in good agreement with both calculated and measured results for similar configurations.
机译:常规的半导体激光二极管由于其多模输出和相对较大的线宽而在光谱学和传感器领域的应用受到限制。尽管使用分布式反馈技术可以进行单模操作,但这往往以可调性为代价。但是,在外部腔体中操作激光二极管会提供可调谐的窄线宽光源,非常适合光谱和传感应用。 ud ud这项工作详细介绍了可调谐外部腔半导体二极管激光器的设计和结构。所使用的外部反射器是以Littrow几何形状工作的衍射光栅。准直的一阶衍射光束聚焦在55厘米远的英国电信研究实验室的1 3fjm激光芯片的防反射涂层小面上。 ud ud使用lm焦距光栅单色仪和傅里叶变换红外光谱仪对腔进行了表征。激光器以预测的方式工作,表现出大大降低的lasmg阈值电流和单模运行。该器件显示了37nm的光栅可调范围,通过电流变化可实现10GHz / mA的模间调谐。计算出的器件线宽为3 3kHz,发现与类似配置的计算结果和测量结果均非常吻合。

著录项

  • 作者

    Hurley Brian Kevin;

  • 作者单位
  • 年度 1993
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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