论文标题

Megades:Megara Galaxy Discs进化调查。数据发布I:中央字段

MEGADES: MEGARA Galaxy Discs Evolution Survey. Data Release I: central fields

论文作者

Chamorro-Cazorla, M., de Paz, A. Gil, Castillo-Morales, A., Gallego, J., Carrasco, E., Iglesias-Páramo, J., García-Vargas, M. L., Pascual, S., Cardiel, N., Catalán-Torrecilla, C., Zamorano, J., Sánchez-Blázquez, P., Pérez-Calpena, A., Gómez-Álvarez, P., Jiménez-Vicente, J.

论文摘要

科学团队在1040万Gran Telescopio Canarias(GTC)剥削Megara仪器的主要兴趣致力于研究附近星系,重点是研究恒星形成的历史以及碟形系统的化学和运动特性的历史。我们将该项目称为Megades:Megara Galaxy Discs Evolution Survey。造影的最初目标是通过删除恒星形成史以及这些区域的有效化学化学物质的贡献,对附近圆盘星系的内部区域进行详细研究,包括它们的光电测量和化学演化及其动态表征。此外,对这些内部区域的动力学分析自然包括对这些区域中可能存在的银河风的鉴定和表征。在稍后的阶段,我们将在半乳酸距离内进一步扩展这项研究。该项目的第一阶段涵盖了对Megara积分场单元观察到的总共43个附近星系中心区域的分析,其中包括保证的时间和开放时间观察。在本文中,我们提供了一组社区可用的处理数据产品,并通过对这些数据的分析进行了有关恒星连续性,电离和中性气体特征的早期结果。

The main interest of the Science Team for the exploitation of the MEGARA instrument at the 10.4m Gran Telescopio Canarias (GTC hereafter) is devoted to the study of nearby galaxies, with focus on the research of the history of star formation, and chemical and kinematical properties of disc systems. We refer to this project as MEGADES: MEGARA Galaxy Discs Evolution Survey. The initial goal of MEGADES is to provide a detailed study of the inner regions of nearby disc galaxies, both in terms of their spectrophotometric and chemical evolution, and their dynamical characterisation, by disentangling the contribution of in-situ and ex-situ processes to the history of star formation and effective chemical enrichment of these regions. In addition, the dynamical analysis of these inner regions naturally includes the identification and characterization of galactic winds potentially present in these regions. At a later stage, we will extend this study further out in galactocentric distance. The first stage of this project encompasses the analysis of the central regions of a total of 43 nearby galaxies observed with the MEGARA Integral Field Unit for 114 hours, including both Guaranteed Time and Open Time observations. In this paper we provide a set of all the processed data products available to the community and early results from the analysis of these data regarding stellar continuum, ionized and neutral gas features.

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