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Science Measurements and Instruments for a Planetary Science Stratospheric Balloon Platform

机译:行星科学划分气球平台的科学测量和仪器

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Balloon platforms operating in Earth's upper stratosphere offer a unique platform to conduct new, high value planetary science observations of our solar system and exoplanets. There are compelling science drivers for conducting observations from such a balloon platform, with several potential high value science measurements that can be accomplished with one of several instrument concepts. Observations from 100,000 to 120,000 feet, which can last from hours to months, night and day, offer significant advantages over observations from ground and aircraft platforms. The stability of the airmass at float altitude is indistinguishable from space so that diffraction-limited performance can be obtained without adaptive optics, resulting in performance at visible wavelengths better than many ground based assets with larger apertures. With >99% of the atmosphere, and almost all the telluric water and CO_2, beneath the platform, previously obscured spectral windows are also now open (e.g. water, CO_2, and the organic fingerprint region of 5-8 μm), others are now fully free from telluric contributions, and observations in the mid through thermal infrared (IR), as well as shortward into the near ultraviolet (NUV), experience more than an order of magnitude less downwelling radiance than do ground based measurements enabling longer integration times and higher contrast observations. Instrument types that would support high value science include broadband and multispectral high spatial resolution NUV-NIR imagers, multispectral and hyper spectral imagers in the 2.5-5 μm range, as well as in the 5-8 μm range.
机译:气球平台在地球上层平流层中运行,提供了一个独特的平台,可以开展新的高价值行星科学观察我们的太阳能系统和外产。有引人注目的科学驱动因素,用于从这种气球平台进行观察,具有几种潜在的高价值科学测量,可以通过几种仪器概念之一实现。从100,000到120,000英尺的观察,可以持续时间到几个月,夜晚和日,在地面和飞机平台的观察中提供了显着的优势。在浮动高度处的空气的稳定性与空间无法区分,从而可以在没有自适应光学器件的情况下获得衍射限制性的性能,导致可见波长的性能优于具有较大孔径的许多地面的资产。占大气中的99%,几乎所有的碲水和CO_2,平台下方,现在也打开了(例如水,CO_2和5-8μm的有机指纹区域),现在完全没有碲捐款,以及在中间通过热红外线(IR)的观察,以及近距离进入近紫外(Nuv),经验比基于地面的测量更长的沉船越来越多的数量级,从而实现更长的集成时间和更高的对比度观察。支持高价值科学的仪器类型包括宽带和多光谱高空间分辨率Nuv-Nir成像仪,多光谱和超频成像器在2.5-5μm范围内,以及5-8μm范围内。

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