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Direct detection of nearby habitable zone planets using slicer based integral field spectrographs and epics on the E-ELT

机译:使用基于切片器的积分场光谱仪和E-ELT上的史诗直接检测附近的宜居带行星

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摘要

Early design studies for the future Exo-Planet Imaging Camera and Specrotgraph (EPICS) on the European Extremely Large Telescope (E-ELT) show the ability to probe the region of super-Earths in the habitable zone of stars within 5pc (including Gilese 581d). However, these planets will be lost to us if the correct choice of integral field spectrograph (IFS) technology is not selected for such an instrument the ability to fit and remove the speckle noise that remains is crucial to reaching these contrasts. We conclusively demonstrate, though the use of an experimental setup producing an artificial speckle, that slicer based IFSs and post-processing using spectral deconvolution can achieve speckle rejection factors exceeding 103. Contrary to popular belief, we do not find any evidence that this choice of IFS technology limits the achievable contrast. Coupled with extreme adaptive optics and high performance coronographs, a slicer based integral field spectrograph could achieve contrasts exceeding 109, enabling these super-Earths to be detected in the habitable zone of nearby stars, making it an attractive option for the next generation of instruments being designed for the direct detection of extra solar planets. Copyright © International Astronomical Union 2014.
机译:对欧洲超大型望远镜(E-ELT)上未来的行星外成像相机和光谱仪(EPICS)进行的早期设计研究表明,能够探测5pc内恒星宜居带中的超地球区域(包括Gilese 581d) )。但是,如果没有为这样的仪器选择正确的积分场光谱仪(IFS)技术选择,那么这些行星将对我们迷失。安装和消除残留的斑点噪声的能力对于达到这些对比度至关重要。我们最终证明,尽管使用产生人工斑点的实验装置,基于切片器的IFS和使用光谱去卷积的后处理可以实现超过103的斑点抑制因子。与普遍的看法相反,我们没有发现任何证据表明这种选择IFS技术限制了可实现的对比度。结合极端自适应光学元件和高性能日冕仪,基于切片器的积分场光谱仪可以实现超过109的对比度,从而能够在附近恒星的宜居区域中检测到这些超地球,这使其成为下一代仪器的诱人选择为直接检测额外的太阳行星而设计。版权所有©2014国际天文学联合会。

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