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Precise astronomical flux calibration and its impact on studying the nature of the dark energy

机译:精确的天文通量校准及其对研究暗能量性质的影响

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Measurements of the luminosity of Type Ia supernovae versus redshift provided the original evidence for the accelerating expansion of the Universe and the existence of dark energy. Despite substantial improvements in survey methodology, systematic uncertainty in flux calibration dominates the error budget for this technique, exceeding both statistics and other systematic uncertainties. Consequently, any further collection of Type Ia supernova data will fail to refine the constraints on the nature of dark energy unless we also improve the state of the art in astronomical flux calibration to the order of 1%. We describe how these systematic errors arise from calibration of instrumental sensitivity, atmospheric transmission and Galactic extinction, and discuss ongoing efforts to meet the 1% precision challenge using white dwarf stars as celestial standards, exquisitely calibrated detectors as fundamental metrologic standards, and real-time atmospheric monitoring.
机译:Ia型超新星与红移的发光度的测量为宇宙加速膨胀和暗能量的存在提供了原始证据。尽管勘查方法有了实质性的改进,但磁通量校准中的系统不确定性仍主导了该技术的误差预算,超过了统计数据和其他系统不确定性。因此,除非我们还将天文通量校准的最新技术水平提高到1%左右,否则任何进一步收集的Ia类超新星数据都将无法完善对暗能量性质的约束。我们将描述这些系统误差是如何由仪器灵敏度,大气传输和银河系消光的校准引起的,并讨论了为满足1%精度挑战而正在进行的工作,这些挑战使用白矮星作为天体标准,经过精确校准的检测器作为基本计量标准以及实时大气监测。

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