Korablev Oleg I, Belyaev Denis A, Dobrolenskiy Yuri S, Trokhimovskiy Alexander Y, Kalinnikov Yuri K
Appl Opt. 2018 Apr 1;57(10):C103-C119. doi: 10.1364/AO.57.00C103.
Spectrometers employing acousto-optic tunable filters (AOTFs) rapidly gain popularity in space, and in particular on interplanetary missions. They allow for reducing volume, mass, and complexity of the instrumentation. To date, space operations of 11 AOTF spectrometers are reported in the literature. They were used for analyzing ocean color, greenhouse gases, atmospheres of Mars and Venus, and for lunar mineralogy. More instruments for the Moon, Mars, and asteroid mineralogy are in flight, awaiting launch, or in the state of advanced development. The AOTFs are used in point (pencil-beam) spectrometers for selecting echelle diffraction orders, or in hyper-spectral imagers and microscopes. We review the AOTF-employing devices flown in space or ready to set off. The paper considers basic principles of the AOTF and science applications of the AOTF spectrometers, and describes developed instruments in some detail. We also address some advanced developments for future missions and plans. In addition, we discuss lessons learned during instrument design, build, calibration, and exploitation, and advantages and limitations in implementing the AOTF-based systems in space instrumentation.
采用声光可调谐滤波器(AOTF)的光谱仪在太空领域,尤其是在行星际任务中迅速受到欢迎。它们有助于减小仪器的体积、质量和复杂度。迄今为止,文献中报道了11台AOTF光谱仪的太空运行情况。它们被用于分析海洋颜色、温室气体、火星和金星的大气层以及月球矿物学。更多用于月球、火星和小行星矿物学研究的仪器正在飞行中、等待发射或处于先进的研发阶段。AOTF被用于点(笔形光束)光谱仪中以选择阶梯光栅衍射级次,或用于高光谱成像仪和显微镜中。我们回顾了已在太空飞行或准备发射的采用AOTF的设备。本文阐述了AOTF的基本原理以及AOTF光谱仪的科学应用,并详细描述了已研发的仪器。我们还探讨了未来任务的一些先进发展和计划。此外,我们讨论了在仪器设计、制造、校准和使用过程中吸取的经验教训,以及在太空仪器中实施基于AOTF的系统的优缺点。