Piltingsrud H V
Appl Opt. 1991 Sep 20;30(27):3952-63. doi: 10.1364/AO.30.003952.
In this research directed toward using lidar methods for mapping concentrations of a variety of hazardous gases and vapors in an indoor workplace, a need was identified for a CO(2) laser that would meet certain special requirements, including an ability to produce 50-100-ns FWHM pulses in pulse pairs having interpulse spacings of 5-100 mus with each pulse of the pair being independently wavelength selectable. A laser was constructed with a low-pressure CO(2) amplifier section because of CO(2)'s long upper lasing level lifetime (>60 micros). This permitted the Q switching of two output pulses from a single laser amplifier electrical transverse discharge pulse, while allowing several microseconds for wavelength changing between pulses. An intracavity beam telescope was employed to use the amplifier discharge cavity cross section efficiently with the small CdTe Q-switch crystals available. A 1200-Hz oscillating grating with a high-resolution grating position sensor was used to change and reprogram wavelengths rapidly. Programming of wavelengths was accomplished by selecting appropriate delay times from the grating position reference signal for triggering the laser amplifier and the Q switch. Most of the basic performance goals of the device were achieved in the laboratory prototype.
在这项旨在利用激光雷达方法测绘室内工作场所各种有害气体和蒸气浓度的研究中,发现需要一种满足某些特殊要求的二氧化碳激光器,这些要求包括能够在脉冲对中产生半高宽为50 - 100纳秒的脉冲,脉冲对的脉冲间隔为5 - 100微秒,且脉冲对中的每个脉冲都可独立选择波长。由于二氧化碳的上能级寿命较长(>60微秒),因此构建了一个带有低压二氧化碳放大器部分的激光器。这使得能够从单个激光放大器的横向放电脉冲中进行Q开关产生两个输出脉冲,同时在脉冲之间留出几微秒用于波长切换。采用腔内光束望远镜,以便有效地利用放大器放电腔的横截面和现有的小碲化镉Q开关晶体。使用带有高分辨率光栅位置传感器的1200赫兹振荡光栅来快速改变和重新编程波长。通过从光栅位置参考信号中选择适当的延迟时间来触发激光放大器和Q开关,从而完成波长编程。该装置的大部分基本性能目标在实验室原型中得以实现。