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STELLAR MODELS IN IR CALIBRATION

机译:红外校准中的恒星模型

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摘要

For the astronomical community analysing ISO-SWS data, a first point to assess when judging and qualifying the observational data concerns the flux calibration accuracy. Since the calibration process is not straightforward and since a wrong calibration may lead to an over- or underestimation of the results, knowledge on the full calibration process and on the still remaining calibration problems is crucial when processing the data. One way to detect calibration problems is by comparing observed data with theoretical predictions of a whole sample of calibration sources. By using an iterative process in which improvements on both the calibration and the theoretical modelling are involved, we will demonstrate that a consistent theoretical data-set of infrared spectra has been constructed. This data-set has been used to derive the OLP10 flux calibration of the ISO-SWS. We will show that the relative flux calibration accuracy of (high-flux) ISO-SWS observations has reached a 2% level of accuracy in band 1 and that the flux calibration accuracy in band 2 has improved significantly with the introduction of the memory-effect correction and the use of our synthetic spectra for the flux calibration derivation, reaching a 6% level of accuracy in band 2.
机译:对于分析ISO-SWS数据的天文界来说,评估和鉴定观测数据时要评估的第一点与通量校准精度有关。由于校准过程不直接,并且错误的校准可能导致结果高估或低估,因此在处理数据时,了解完整的校准过程以及仍然存在的校准问题至关重要。检测校准问题的一种方法是将观察到的数据与整个校准源样本的理论预测值进行比较。通过使用其中涉及校准和理论建模方面的改进的迭代过程,我们将证明已构建了一致的红外光谱理论数据集。此数据集已用于导出ISO-SWS的OLP10通量校准。我们将显示,(高通量)ISO-SWS观测值的相对通量校准精度在波段1中已经达到2%的精度水平,并且由于引入了记忆效应,波段2中的通量校准精度有了显着提高。校正并使用我们的合成光谱进行通量校准推导,在频段2中达到6%的精度水平。

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