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Occultation Spectrophotometry of Extrasolar Planets with SOFIA

机译:用索非亚的亚源性行星掩星分光光度法

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The NASA/DLR Stratospheric Observatory for Infrared Astronomy (SOFIA), a 2.5-meter infrared telescope on board a Boeing 747-SP, will conduct 0.3 - 1,600 μm photometric, spectroscopic, and imaging observations from altitudes as high as 45,000 ft., where the average atmospheric transmission is greater than 80 percent. SOFIA's first light cameras and spectrometers, as well as future generations of instruments, will make important contributions to the characterization of the physical properties of exoplanets. Our analysis shows that optical and near-infrared photometric and spectrophotometric follow-up observations during planetary transits and eclipses will be feasible with SOFIA's instrumentation, in particular the HIPO-FLITECAM optical/NIR instruments. The airborne-based platform has unique advantages in comparison to ground- and space-based observatories in this field of research which we will outline here. Furthermore we will present two exemplary science cases, that will be conducted in SOFIA's cycle 1.
机译:用于红外天文学(SOFIA)的NASA / DLR平流层天文​​台,在BOEING 747-SP上的2.5米的红外望远镜,将导电0.3-1,600μm光度测量,光谱和成像观察,从高度高达45,000英尺。,在哪里平均大气传输大于80%。 Sofia的首款光摄像机和光谱仪以及未来几代仪器,将对外产网上物理性质的表征进行重要贡献。我们的分析表明,通过索非亚的仪器,特别是HIPO-FLITECAM光/鼻仪器,光学和近红外光度和分光光度测量的后续观测将是可行的,特别是HIPO-FLITECAM光学/ NIR仪器。基于空中的平台与我们将在此概述的研究领域的地面和空间的观测者相比,具有独特的优势。此外,我们将在索非亚的循环1中进行两个示例性科学案例。

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