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FADO: A novel self-consistency spectral population synthesis tool for the exploration of galaxy evolution at high redshift

机译:FADO:一种新型的自我一致性光谱群合理综合工具,用于探索高射频的银河演变

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Despite significant progress over the past decades, all state-of-the-art population synthesis (PS) codes suffer from deficiencies limiting their potential of gaining sharp insights into the star formation history (SFH) and Chemical Enrichment History (CEH) of star-forming galaxies, i.e. the neglect of nebular continuum and, the lack of a mechanism to ensure consistency between the best-fitting SFH and the observed nebular characteristics (ONC; Balmer-lines, Balmer/ Paschen jumps). These introduce biases in their recovered physical properties (stellar mass M* and sSFR). FADO is a novel self-consistent PS code employing genetic optimization, publicly available (http://www.spectralsynthesis.org), capable of identifying the SFH & CEH that reproduce the ONC of a galaxy, alleviating degeneracies in the spectral fits. The current version of FADO (v1.b) uses standard BPT emission-line ratios for the classification of low redshift (z) galaxies. Whereas this permits a reliable distinction between star-forming, Composite, Seyfert and LINERs, it is inapplicable to many intermediate-z galaxies. We present an adaptation of FADO (version v1.c) to classify higher z galaxies employing the "Blue Diagram" (e.g., Lamareille 2010) for which the most prominent blue emission- lines (< [OIII]5007?) are observable while the Hα and [NII] are inaccessible. FADO v1.c was applied to synthetic spectra simulating the evolution of galaxies formed at higher-z with different SFHs. FADO can recover the physical and evolutionary properties of galaxies, such as M* and mean age / metallicity, with an accuracy significantly better than purely-stellar codes. An outline of FADO v1.c and applications to local and intermediate-z galaxies will be presented.
机译:尽管过去几十年来取得了重大进展,但所有最先进的人口综合(PS)代码患有缺陷,限制了他们对明星形成历史(SFH)和化学浓缩历史(CEH)的急剧洞察的潜力 - 形成星系,即忽视麻骨连续体,缺乏一种机制,确保最佳拟合SFH和观察到的内脏特性之间的一致性(ONC; BALMER-LINES,BALMER / PASCHEN跳跃)。这些引入其恢复的物理性质(Stellar Mass M *和SSFR)中引入偏差。 FADO是一种新颖的自我一致的PS代码,采用遗传优化,公开可用(http://www.spectralsynthess.org),能够识别再现银河系的ONC的SFH和CEH,缓解光谱配合的退化率。当前版本的FADO(v1.b)使用标准BPT发光线比率,用于分类低射频(Z)星系。然而,这允许在星形,复合材料,SEYFERT和衬里之间的可靠区分,它是对许多中间Z星系的不适用。我们展示了FADO(版本V1.C)的适应,以分类采用“蓝图”(例如,Lamareille 2010)的更高Z星系,其中最突出的蓝色排放线(<[oiii] 5007?)是可观察到的Hα和[NII]无法进入。 FADO V1.C应用于综合光谱,模拟在具有不同SFH的高Z上形成的星系的演变。 FADO可以恢复星系的物理和进化性质,例如M *和平均年龄/金属性,精度明显优于纯恒星码。将介绍FADO V1.C和应用于本地和中级Z星系的应用程序的轮廓。

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