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Stop-less Lyot coronagraph for exoplanet characterization

机译:停止的leosot rononagraG用于外出表征

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The characterization of directly-imaged exoplanets at very small angular separations requires high-contrast spec-troscopic capabilities. For this purpose, the new generation of instruments dedicated to direct imaging of massive exoplanets at large orbital radii, such as VLT/SPHERE and Gemini/GPI, includes integral field spectroscopy (IFS) and/or long slit spectroscopy (LSS) coupled with coronography. LSS is particularly challenging since observations will be stronly limited by quasi-static speckles and diffraction residuals that need to be removed with a posteriori data analysis methods. It is therefore necessary to limit as much as possible the influence of diffraction in the data. In this work we compare the use of the classical Lyot coronagraph (CLC) and the stop- less Lyot coronagraph (SLLC) with LSS for the characterization of exoplanets. SLLC uses a grey apodization to suppress the diffraction above 4.53 λ/D and does not require the use of any Lyot stop, offering a convenient implementation. We show that this apodized long slit spectroscopy (ALSS) improves notably the performance at small angular separations (0.3"-0.4"), allowing the spectral analysis of colder planets.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:在非常小的角度分离下直接成像的外部凸起的表征需要高对比度的规格 - 轨道能力。为此目的,专用于大型轨道半径(如VLT / Spepher和Gemini / GPI)的新一代仪器,例如VLT /球形和Gemini / GPI,包括与叠叠相结合的整体场光谱(IFS)和/或长狭缝光谱(LSS) 。 LSS尤其具有挑战性,因为观察将受到需要用后验数据分析方法除去的准静态斑点和衍射残留物的影响。因此,必须尽可能地限制数据中衍射的影响。在这项工作中,我们将古典Lyot Coronagraph(CLC)和停止的Lyot Coronagraph(SLLC)与LSS进行比较,以便表征出延长。 SLLC使用灰色的空间来抑制4.53&lambda以上的衍射; / D,不需要使用任何Lyot停止,提供方便的实施。我们表明,这种停止的长狭缝光谱(ALSS)显着提高了小角度分离(0.3“-0.4”)的性能,允许较冷的行星的光谱分析。©(2012)光学仪表工程师的版权协会(SPIE) 。仅供个人使用的摘要下载。

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