论文标题

梯形光谱的最佳提取:从观察中获得最大的收益

Optimal extraction of echelle spectra: getting the most from observations

论文作者

Piskunov, Nikolai, Wehrhahn, Ansgar, Marquart, Thomas

论文摘要

随着主镜的大小,仪器的价格和现代望远镜上观察时间的价格正在迅速增加。因此,值得重新审视数据减少算法以从观察结果中提取所有科学信息。梯形光谱仪是高分辨率光谱中的典型仪器,但试图改善这些仪器的波长覆盖范围和多功能性会导致进入科学检测器的入口缝隙投影的复杂且可变的足迹。传统的光谱提取方法无法执行真正的最佳提取,而当缝隙图像与检测器柱不符,而是倾斜甚至弯曲时。 我们在这里介绍了数学算法及其在最佳提取中的应用示例,以及配备有一个入口缝隙的梯形光谱仪的以下还原步骤,这些步骤是带有各种变形的成像,例如可变的倾斜和曲率。新方法可最大程度地减少光谱分辨率的损失,最大化信噪比,并有效地识别局部异常值。除了新的最佳提取外,我们还提出订单剪接和更健壮的连续归一化算法。 我们已经开发并实施了创建连续归一化频谱的新算法。在此过程中,我们说明了检测器上的缝隙图像的(变量)倾斜/曲率,并在没有关于缝隙照明的事先假设的情况下实现最佳提取。因此,新方法可以处理旨在增加吞吐量或动态范围的任意图像切片器,狭缝扫描和其他观察技术。 我们将我们的方法与其他工具的其他技术进行比较,以说明与常用程序相比,新算法的出色性能。

The price of instruments and observing time on modern telescopes is quickly increasing with the size of the primary mirror. Therefore, it is worth revisiting the data reduction algorithms to extract every bit of scientific information from observations. Echelle spectrographs are typical instruments in high-resolution spectroscopy, but attempts to improve the wavelength coverage and versatility of these instruments results in a complicated and variable footprint of the entrance slit projection onto the science detector. Traditional spectral extraction methods fail to perform a truly optimal extraction, when the slit image is not aligned with the detector columns but instead is tilted or even curved. We here present the mathematical algorithms and examples of their application to the optimal extraction and the following reduction steps for echelle spectrometers equipped with an entrance slit, that is imaged with various distortions, such as variable tilt and curvature. The new method minimizes the loss of spectral resolution, maximizes the signal-to-noise ratio, and efficiently identifies local outliers. In addition to the new optimal extraction we present order splicing and a more robust continuum normalization algorithms. We have developed and implemented new algorithms that create a continuum-normalized spectrum. In the process we account for the (variable) tilt/curvature of the slit image on the detector and achieve optimal extraction without prior assumptions about the slit illumination. Thus the new method can handle arbitrary image slicers, slit scanning, and other observational techniques aimed at increasing the throughput or dynamic range. We compare our methods with other techniques for different instruments to illustrate superior performance of the new algorithms compared to commonly used procedures.

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