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Experimental design for the Gemini planet imager

机译:双子座行星成像仪的实验设计

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The Gemini Planet Imager (GPI) is a high-performance adaptive optics system being designed and built for the Gemini Observatory. GPI is optimized for high-contrast imaging, combining precise and accurate wavefront control, diffraction suppression, and a speckle-suppressing science camera with integral field and polarimetry capabilities. The primary science goal for GPI is the direct detection and characterization of young, Jovianmass exoplanets. For plausible assumptions about the distribution of gas giant properties at large semimajor axes, GPI will be capable of detecting more than 10% of gas giants more massive than 0:5 MJ around stars younger than 100 Myr and nearer than 75 pc. For systems younger than 1 Gyr, gas giants more massive than 8 MJ and with semimajor axes greater than 15 AU are detected with completeness greater than 50%. A survey targeting young stars in the solar neighborhood will help determine the formation mechanism of gas giant planets by studying them at ages where planet brightness depends upon formation mechanism. Such a survey will also be sensitive to planets at semimajor axes, comparable with the gas giants in our own solar system. In the simple, and idealized, situation in which planets formed by either the "hot-start" model of Burrows et al. or the core accretion model of Marley et al., a few tens of detected planets are sufficient to distinguish how planets form.
机译:双子座行星成像仪(GPI)是为双子座天文台设计和制造的高性能自适应光学系统。 GPI针对高对比度成像进行了优化,结合了精确的波前控制,衍射抑制以及具有积分场和偏振功能的散斑抑制科学相机。 GPI的主要科学目标是直接检测和鉴定年轻的Jovianmass系外行星。对于大半长轴上气体巨星属性分布的合理假设,GPI将能够检测到小于100 Myr且小于75 pc的恒星周围质量超过0:5 MJ的10%以上的气体巨星。对于小于1 Gyr的系统,将检测到质量大于8 MJ且半长轴大于15 AU的气体巨人,其完整性大于50%。一项针对太阳附近年轻恒星的调查,将通过研究天然气亮度取决于形成机理的年龄,来帮助确定气体巨型行星的形成机理。这样的调查也将对半长轴上的行星敏感,这与我们自己的太阳系中的气体巨人相当。在简单理想的情况下,由Burrows等人的“热启动”模型形成行星。或Marley等人的核心吸积模型,检测到的几十个行星足以区分行星的形成方式。

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