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THE SPHERE IFS AT WORK

机译:球体如果在工作中

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摘要

SPHERE is an extrasolar planet imager whose goal is to detect giant extrasolar planets in the vicinity of bright stars and to characterize them through spectroscopic and polarimetric observations. It is a complete system with a core made of an extreme-Adaptive Optics (AO) turbulence correction, a pupil tracker and NIR and Visible coronagraph devices. At its back end, a differential dual imaging camera and an integral field spectrograph (IFS) work in the Near Infrared (NIR) (0.95 ≤λ≤2.32 μm) and a high resolution polarization camera covers the visible (0.6 ≤λ≤0.9 μm). The IFS is a low resolution spectrograph (R~50) operates in the near IR (0.95≤λ≤1.6 μm), an ideal wavelength range for the detection of planetary features, over a field of view of about 1.7 x 1.7 square arcsecs. Form spectra it is possible to reconstruct monochromatic images with high contrast (10-7) and high spatial resolution, well inside the star PSF. In this paper we describe the IFS, its calibration and the results of several performance which IFS underwent. Furthermore, using the IFS characteristics we give a forecast on the planetary detection rate.
机译:球体是一个额外的行星成像器,其目标是检测光亮恒星附近的巨型额外行星,并通过光谱和极化观察来表征它们。它是一个完整的系统,具有由极端自适应光学(AO)湍流校正,瞳孔跟踪器和NIR和可见调节装置制成的核心。在其后端,差分双重成像相机和近红外线(NIR)的整体场光谱仪(IFS)工作(0.95≤λ≤2.32μm)和高分辨率偏振相机覆盖可见光(0.6≤λ≤0.9μm )。 IFS是低分辨率光谱仪(R〜50)在近IR(0.95≤λ≤1.6μm)中操作,用于检测行星特征的理想波长范围,在约1.7 x 1.7平方弧度的视野上。形成光谱可以重建具有高对比度(10-7)和高空间分辨率的单色图像,井在星形PSF内。在本文中,我们描述了IFS,其校准和几种性能的结果,其中ifs接受了。此外,使用IFS特征我们在行星检测率上提供预测。

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