模拟环星系介质的自动方法:大型测量中模拟制作和拟合金属剖面的新工具

A. Longobardi, M. Fossati, M. Fumagalli, B. Agarwal, E. Lofthouse, Marta Galbiati, R. Dutta, Trystyn A. M. Berg, Louise A Welsh
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引用次数: 0

摘要

我们提出了两种新的工具来研究和模拟环银河系介质中的金属吸收线。第一个工具被称为“NMF Profile Maker”(NMF - PM),它使用非负矩阵分解(NMF)方法,提供了一种强大的方法来生成大型真实金属吸收剖面库。该方法在高分辨率(R > 4000)、高信噪比(S/N≥10)类星体光谱中获得的650个红移区间z = 0.9 ~ 4.2、柱密度11.2≤log (N/cm−2)≤16.3的不饱和金属吸收体上进行了训练和测试。为了避免虚假特征,我们使用代码“Monte-Carlo Absorption line Fitter”(MC - ALF)对观测线轮廓的无限S/N Voigt模型进行训练,这是一种新颖的自动贝叶斯拟合代码,也是我们在本工作中提出的第二个工具。MC - ALF是基于嵌套采样的蒙特卡罗代码,无需任何事先猜测或人为干预,即可将金属线分解为单个Voigt组件。MC - ALF和NMF - PM都是公开的,允许社区生产大型合成金属型材库,并以自动方式重建吸收线的Voigt模型。这两种工具都有助于在类星体的大型光谱调查中模拟和分析金属吸收体的科学努力,比如正在进行的暗能量光谱仪器(DESI)、4米多目标光谱望远镜(4MOST)和WHT增强区域速度探测器(WEAVE)调查。
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Towards an automatic approach to modelling the circumgalactic medium: new tools for mock making and fitting of metal profiles in large surveys
We present two new tools for studying and modelling metal absorption lines in the circumgalactic medium. The first tool, dubbed “NMF Profile Maker” (NMF−PM), uses a non-negative matrix factorization (NMF) method and provides a robust means to generate large libraries of realistic metal absorption profiles. The method is trained and tested on 650 unsaturated metal absorbers in the redshift interval z = 0.9 − 4.2 with column densities between 11.2 ≤ log (N/cm−2) ≤ 16.3, obtained from high-resolution (R > 4000) and high signal-to-noise ratio (S/N ≥ 10) quasar spectroscopy. To avoid spurious features, we train on infinite S/N Voigt models of the observed line profiles derived using the code “Monte-Carlo Absorption Line Fitter” (MC−ALF), a novel automatic Bayesian fitting code that is the second tool we present in this work. MC−ALF is a Monte Carlo code based on nested sampling that, without the need for any prior guess or human intervention, can decompose metal lines into individual Voigt components. Both MC−ALF and NMF−PM are made publicly available to allow the community to produce large libraries of synthetic metal profiles and to reconstruct Voigt models of absorption lines in an automatic fashion. Both tools contribute to the scientific effort of simulating and analysing metal absorbers in very large spectroscopic surveys of quasars like the ongoing Dark Energy Spectroscopic Instrument (DESI), the 4-meter Multi-Object Spectroscopic Telescope (4MOST), and the WHT Enhanced Area Velocity Explorer (WEAVE) surveys.
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