论文标题

整体现场单元数据吸管(卫星)的光谱分析工具:NGC 7009和NGC 6778的案例研究

Spectroscopic Analysis Tool for intEgraL fieLd unIt daTacubEs (satellite): Case studies of NGC 7009 and NGC 6778 with MUSE

论文作者

Akras, S., Monteiro, H., Walsh, J. R., García-Rojas, J., Aleman, I., Boffin, H., Boumis, P., Chiotellis, A., Corradi, R. M. L., Gonçalves, D. R., Gutiérrez-Soto, L. A., Jones, D., Morisset, C., Papanikolaou, X.

论文摘要

积分田间光谱(IFS)提供了独特的功能,可以在2D视野上研究扩展来源,但它也需要新的技术和工具。 In this paper, we present an automatic code, Spectroscopic Analysis Tool for intEgraL fieLd unIt daTacubEs, SATELLITE, designed to fully explore such capability in the characterization of extended objects, such as planetary nebulae, H II regions, galaxies, etc. SATELLITE carries out 1D and 2D spectroscopic analysis through a number of pseudo-slits that simulate slit spectrometry, as well as emission line imaging. 1D分析允许将积分场单元(IFU)数据与基于长期光谱的先前研究进行直接比较,而2D分析允许在两个空间方向上探索物理性质。星际灭绝,电子温度和密度,碰撞激发线的离子丰度,使用PYNEB包装计算的,总元素丰度和电离校正因子是计算的。代码中实现了蒙特卡洛方法,以计算所有物理参数的不确定性。卫星提供了一种强大的工具,可以自动和用户可配置的方式从IFS观察中提取物理信息。卫星的能力和性能是通过比较从行星Nebula NGC 7009的多单元光谱探险仪(MUSE)数据与从文献中可用的长期和IFU数据获得的结果之间进行比较的。还提出了基于缪斯数据的NGC 6778的卫星表征。

Integral field spectroscopy (IFS) provides a unique capability to spectroscopically study extended sources over a 2D field of view, but it also requires new techniques and tools. In this paper, we present an automatic code, Spectroscopic Analysis Tool for intEgraL fieLd unIt daTacubEs, SATELLITE, designed to fully explore such capability in the characterization of extended objects, such as planetary nebulae, H II regions, galaxies, etc. SATELLITE carries out 1D and 2D spectroscopic analysis through a number of pseudo-slits that simulate slit spectrometry, as well as emission line imaging. The 1D analysis permits direct comparison of the integral field unit (IFU) data with previous studies based on long-slit spectroscopy, while the 2D analysis allows the exploration of physical properties in both spatial directions. Interstellar extinction, electron temperatures and densities, ionic abundances from collisionally excited lines, total elemental abundances and ionization correction factors are computed employing the Pyneb package. A Monte Carlo approach is implemented in the code to compute the uncertainties for all the physical parameters. SATELLITE provides a powerful tool to extract physical information from IFS observations in an automatic and user configurable way. The capabilities and performance of SATELLITE are demonstrated by means of a comparison between the results obtained from the Multi Unit Spectroscopic Explorer (MUSE) data of the planetary nebula NGC 7009 with the results obtained from long-slit and IFU data available in the literature. The SATELLITE characterization of NGC 6778 based on MUSE data is also presented.

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