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NIMBUS: the Near-infrared Multi-Band Ultraprecise Spectroimager for SOFIA

机译:NIMBUS:用于SOFIA的近红外多波段超精密分光成像仪

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摘要

We present a new and innovative near-infrared multi-band ultraprecise spectroimager (NIMBUS) for SOFIA. This design is capable of characterizing a large sample of extrasolar planet atmospheres by measuring elemental and molecular abundances during primary transit and occultation. This wide-field spectroimager would also provide new insights into Trans-Neptunian Objects (TNO), Solar System occultations, brown dwarf atmospheres, carbon chemistry in globular clusters, chemical gradients in nearby galaxies, and galaxy photometric redshifts. NIMBUS would be the premier ultraprecise spectroimager by taking advantage of the SOFIA observatory and state of the art infrared technologies. This optical design splits the beam into eight separate spectral bandpasses, centered around key molecular bands from 1 to 4μm. Each spectral channel has a wide field of view for simultaneous observations of a reference star that can decorrelate time-variable atmospheric and optical assembly effects, allowing the instrument to achieve ultraprecise calibration for imaging and photometry for a wide variety of astrophysical sources. NIMBUS produces the same data products as a low-resolution integral field spectrograph over a large spectral bandpass, but this design obviates many of the problems that preclude high-precision measurements with traditional slit and integral field spectrographs. This instrument concept is currently not funded for development.
机译:我们为SOFIA展示了一种新型的创新型近红外多波段超精密光谱成像仪(NIMBUS)。这种设计能够通过测量一次过境和掩星过程中的元素和分子丰度来表征大量太阳系外行星大气的特征。这款广角分光成像仪还将提供对海王星海天体(TNO),太阳系掩星,棕矮星大气,球状星团中的碳化学,附近星系中的化学梯度以及星系光度红移的新见解。通过利用SOFIA天文台和最先进的红外技术,NIMBUS将成为首屈一指的超精密分光成像仪。这种光学设计将光束分成8个独立的光谱带通,以1至4μm的关键分子带为中心。每个光谱通道具有广阔的视野,可同时观察参考星,从而可以消除时变的大气和光学装配效应,从而使仪器能够针对各种天体物理源实现成像和光度学的超高精度校准。 NIMBUS在较大的光谱带通上可产生与低分辨率积分场光谱仪相同的数据产物,但是这种设计消除了许多传统的狭缝和积分场光谱仪无法进行高精度测量的问题。该工具概念目前尚未获得开发资金。

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