Weidmann D, Reburn W J, Smith K M
STFC Rutherford Appleton Laboratory, Space Science and Technology Department, Didcot, Oxfordshire, OX11 0QX, United Kingdom.
Rev Sci Instrum. 2007 Jul;78(7):073107. doi: 10.1063/1.2753141.
The advent of quantum cascade lasers has provided matured continuously tunable solid state laser sources emitting from mid-infrared to terahertz wavelengths. Such sources, used as local oscillators, offer the practical prospect of aircraft, high altitude platform, and satellite deployment of compact and shot noise limited heterodyne radiometers for Earth observation and astronomy. A ground-based prototype of a quantum cascade laser heterodyne radiometer operating in the mid-infrared has been developed and is presented. The instrument design and concepts are described, together with evaluation of the instrument in the laboratory and during field measurements of atmospheric ozone. In this study the best performance achieved by the prototype quantum cascade laser heterodyne radiometer was a signal-to-noise ratio of three times the theoretical shot-noise limit. The prototype has allowed the main sources of excess noise to be identified as residual optical feedback in the local oscillator optical path and a lack of mechanical and thermal stability in the local oscillator collimation system. Instrument improvements are currently being implemented and enhanced performance is expected in the near future.
量子级联激光器的出现,提供了从 mid - 红外到太赫兹波长连续可调的成熟固态激光源。这种用作本地振荡器的光源,为飞机、高空平台以及卫星部署紧凑且受散粒噪声限制的外差辐射计用于地球观测和天文学提供了切实可行的前景。本文展示了一个工作在 mid - 红外波段的量子级联激光外差辐射计的地基原型。文中描述了该仪器的设计和原理,以及在实验室对其的评估和在大气臭氧实地测量期间的情况。在本研究中,量子级联激光外差辐射计原型实现的最佳性能是信噪比为理论散粒噪声极限的三倍。该原型已确定多余噪声的主要来源为本地振荡器光路中的残余光学反馈以及本地振荡器准直系统缺乏机械和热稳定性。目前正在对仪器进行改进,预计在不久的将来性能会得到提升。