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Solar Contamination in Extreme-precision Radial-velocity Measurements: Deleterious Effects and Prospects for Mitigation

机译:极端精密径向速度测量中的太阳能污染:减缓的有害效果和前景

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Solar contamination, due to moonlight and atmospheric scattering of sunlight, can cause systematic errors in stellar radial velocity (RV) measurements that significantly detract from the ~10 cm s?1 sensitivity required for the detection and characterization of terrestrial exoplanets in or near habitable zones of Sun-like stars.The addition of low-level spectral contamination at variable effective velocity offsets introduces systematic noise when measuring velocities using classical mask-based or template-based cross-correlation techniques.Here we present simulations estimating the range of RV measurement error induced by uncorrected scattered sunlight contamination.We explore potential correction techniques, using both simultaneous spectrometer sky fibers and broadband imaging via coherent fiber imaging bundles, that could reliably reduce this source of error to below the photon-noise limit of typical stellar observations.We discuss the limitations of these simulations, the underlying assumptions, and mitigation mechanisms.We also present and discuss the components designed and built into the NEID (NN-EXPLORE Exoplanet Investigations with Doppler spectroscopy) precision RV instrument for the WIYN 3.5 m telescope, to serve as an ongoing resource for the community to explore and evaluate correction techniques.We emphasize that while "bright time" has been traditionally adequate for RV science, the goal of 10 cm s?1 precision on the most interesting exoplanetary systems may necessitate access to darker skies for these next-generation instruments.
机译:由于阳光的月光和大气散射,太阳能污染可能导致恒星径向速度(RV)测量中的系统误差显着减损了〜10cm的〜10cm s的〜1次敏感性所需的陆地外部外延太阳般的恒星。在使用基于经典掩模或基于模板的互相关技术的测量速度时,在可变有效速度偏移下的低级光谱污染的增加引入了系统噪声。我们存在估计RV测量误差范围的模拟由未矫正的散射阳光污染引起。我们探讨了通过相干光纤成像束的同时光谱仪天空光纤和宽带成像的潜在校正技术,可以可靠地将该误差源降低到典型的恒星观测的光子噪声极限。我们讨论这些模拟的局限性,底层假设和缓解机制。我们还存在并讨论为Wiyn 3.5 M望远镜的Neid(NN-Explore Exoplanet调查)设计和内置的组件,用于Wiyn 3.5米望远镜,作为社区探索的持续资源并评估校正技术。我们强调,虽然“明亮时间”传统上是对RV科学的足够充足的,但最有趣的外部工业系统上的10cm S的精度可能需要获得这些下一代仪器的更暗的天空。

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