论文标题
Herschel Spire傅立叶变换光谱仪光谱特征Finder III。线识别和离轴光谱
The Herschel SPIRE Fourier Transform Spectrometer Spectral Feature Finder III. Line Identification and Off-Axis Spectra
论文作者
论文摘要
ESA Herschel光谱和光度成像接收器(SPIRE)傅立叶变换光谱仪(FTS)光谱特征发现器(FF)项目是在Spire仪器团队内开发的自动光谱特征拟合程序,可从所有公开可用的Spire FTS观测值中提取所有突出的光谱特征。我们介绍了FF的扩展,以将FTS的离轴检测器包括在稀疏采样的单点观测中,结果已将其结果摄入到目录中。我们还介绍了一个自动例程的结果,以鉴定与FF提取的光谱特征相对应的原子/分子跃迁。我们使用307个原子细胞结构和分子线的模板,这些模板通常在尖峰FTS光谱中用于交叉匹配。该例程利用线条标识提供的信息来搜索迭代FF排除或错过的低信噪比功能。总体而言,确定了178,942条线的原子/分子跃迁(对应于整个FF目录的83%),另外33,840个光谱线与Spire FTS观测值缺失的特征相关联。
The ESA Herschel Spectral and Photometric Imaging Receiver (SPIRE) Fourier Transform Spectrometer (FTS) Spectral Feature Finder (FF) project is an automated spectral feature fitting routine developed within the SPIRE instrument team to extract all prominent spectral features from all publicly available SPIRE FTS observations. We present the extension of the FF to include the off-axis detectors of the FTS in sparsely sampled single-pointing observations, the results of which have been ingested into the catalogue. We also present the results from an automated routine for identifications of the atomic/molecular transitions that correspond to the spectral features extracted by the FF. We use a template of 307 atomic fine structure and molecular lines that are commonly found in SPIRE FTS spectra for the cross-match. The routine makes use of information provided by the line identification to search for low signal-to-noise ratio features that have been excluded or missed by the iterative FF. In total, the atomic/molecular transitions of 178,942 lines are identified (corresponding to 83% of the entire FF catalogue), and an additional 33,840 spectral lines associated with missing features from SPIRE FTS observations are added to the FF catalogue.