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首页> 外文期刊>CEAS Space Journal >Design of a direct-detection wind and aerosol lidar for mars orbit
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Design of a direct-detection wind and aerosol lidar for mars orbit

机译:用于火星轨道的直接检测风和气溶胶激光器的设计

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The present knowledge of the Mars atmosphere is greatly limited by a lack of global measurements of winds and aerosols. Hence, measurements of height-resolved wind and aerosol profiles are a priority for new Mars orbiting missions. We have designed a direct-detection lidar (MARLI) to provide global measurements of dust, winds and water ice profiles from Mars orbit. From a 400-km polar orbit, the instrument is designed to provide wind and backscatter measurements with a vertical resolution of 2 km and with resolution of 2 degrees in latitude along track. The instrument uses a single-frequency, seeded Nd:YAG laser that emits 4 mJ pulses at 1064 nm at a 250 Hz pulse rate. The receiver utilizes a 50-cm diameter telescope and a double-edge Fabry-Perot etalon as a frequency discriminator to measure the Doppler shift of the aerosol-backscatter profiles. The receiver also includes a polarization-sensitive channel to detect the cross-polarized backscatter profiles from water ice. The receiver uses a sensitive 4 x 4 pixel HgCdTe avalanche photodiode array as a detector for all signals. Here we describe the measurement concept, instrument design, and calculate its performance for several cases of Mars atmospheric conditions. The calculations show that under a range of atmospheric conditions MARLI is capable of measuring wind speed profiles with random error of 2-4 m/s within the first three scale heights, enabling vertically resolved mapping of transport processes in this important region of the atmosphere.
机译:对火星气氛的目前的了解受风险和气溶胶的全球测量极大的限制。因此,高度分辨的风和气溶胶谱的测量是新火星轨道轨道任务的优先事项。我们设计了直接检测激光雷达(Marli),以提供来自火星轨道的全球灰尘,风和水冰轮廓。从400公里的极地轨道,该仪器旨在提供风和反向散射测量,垂直分辨率为2公里,沿轨道的纬度分辨率为2度。该仪器使用单频,种子Nd:YAG激光器,其以250Hz脉冲率以1064nm发射4 MJ脉冲。接收器利用50厘米直径的望远镜和双边缘法布里 - 珀罗标准具,作为频率鉴别器,以测量气溶胶背散件的多普勒偏移。接收器还包括偏振敏感通道,用于检测来自水冰的交叉极化的反向散射曲线。接收器使用敏感的4×4像素HGCDTE Avalanche光电二极管阵列作为所有信号的检测器。在这里,我们描述了测量概念,仪器设计,并计算了几种火星大气条件的情况。计算表明,在一系列大气条件下,Marli能够在前三个刻度高度内测量具有2-4米/秒的随机误差的风速谱,从而在大气的这个重要区域中实现了运输过程的垂直解决的映射。

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