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A mesospheric airglow multichannel photometer and an optical method to measure mesospheric AGW intrinsic parameters

机译:中球气辉多通道光度计和测量中球AGW固有参数的光学方法

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A multichannel photometer (MCP) instrument, designed with filters for three specific airglow emissions, OH Meinel (5-1), (6-2), 840 nm; O-2 (b) (0,1), 865 nm; and O(S-1), 557.7 nm, as well as background, is used to observe atmospheric wave perturbations to layers in the local zenith with high temporal resolution (similar to 5 s). By measuring the relative phase of propagating waves through the layers, with known altitude separation, we deduce the vertical wavelength. We describe here the instrument attributes, a unique background subtraction technique, and the validation of a new method for determining intrinsic wave parameters via MCP and imager data that can be taken from various platforms, including ground-based and spacecraft platforms. Vertical wavelengths deduced using this method are in close agreement with those measured using MAR temperatures as well as those calculated with the dispersion relation using a combination of all-sky imager (horizontal wavelength) and meteor radar (winds) data. (C) 2016 Elsevier Ltd. All rights reserved.
机译:一种多通道光度计(MCP)仪器,设计有用于三种特定气辉发射的滤光片,OH Meinel(5-1),(6-2),840 nm; O-2(b)(0,1),865 nm; O(S-1)和557.7 nm以及背景被用于以高时间分辨率(类似于5 s)观察大气波对本地天顶各层的扰动。通过以已知的高度间隔测量穿过层的传播波的相对相位,我们可以得出垂直波长。我们在这里描述了仪器的属性,独特的背景扣除技术以及通过MCP和成像仪数据确定固有波参数的新方法的验证,该方法可以从包括地面和航天器平台在内的各种平台获取。使用此方法推导出的垂直波长与使用MAR温度测得的垂直波长以及使用全天候成像仪(水平波长)和流星雷达(风)数据的组合通过色散关系计算的垂直波长非常一致。 (C)2016 Elsevier Ltd.保留所有权利。

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