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The Belgian repository of fundamental atomic data and stellar spectra (BRASS)

机译:比利时基本原子数据和恒星光谱库(BRASS)

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Context . Fundamental atomic transition parameters, such as oscillator strengths and rest wavelengths, play a key role in modelling and understanding the chemical composition of stars in the universe. Despite the significant work under way to produce these parameters for many astrophysically important ions, uncertainties in these parameters remain large and can limit the accuracy of chemical abundance determinations. Aims . The Belgian repository of fundamental atomic data and stellar spectra (BRASS) aims to provide a large systematic and homogeneous quality assessment of the atomic data available for quantitative spectroscopy. BRASS shall compare synthetic spectra against extremely high-quality observed spectra, at a resolution of ~85 000 and signal-noise ratios of ~1000, for approximately 20 bright BAFGK spectral-type stars, in order to critically evaluate the atomic data available for over a thousand potentially useful spectral lines. Methods . A large-scale homogeneous selection of atomic lines is performed by synthesising theoretical spectra of literature atomic lines for FGK-type stars including the Sun, resulting in a selection of 1091 theoretically deep and unblended lines in the wavelength range 4200–6800 ?, which may be suitable for quality assessment. Astrophysical log( g ? f ) values are determined for the 1091 transitions using two commonly employed methods. The agreement of these log( g ? f ) values are used to select well-behaved lines for quality assessment. Results . We found 845 atomic lines to be suitable for quality assessment, of which 408 were found to be robust against systematic differences between analysis methods. Around 53% of the quality-assessed lines were found to have at least one literature log( g ? f ) value in agreement with our derived values, though the remaining values can disagree by as much as 0.5 dex. Only ~38% of Fe? I lines were found to have sufficiently accurate log( g ? f ) values, increasing to ~70–75% for the remaining Fe-group lines.
机译:语境。基本的原子跃迁参数,例如振荡器强度和静止波长,在建模和理解宇宙中恒星的化学组成方面起着关键作用。尽管正在进行大量工作来为许多天体重要的离子生成这些参数,但是这些参数的不确定性仍然很大,并且可能会限制化学丰度测定的准确性。目的。比利时基本原子数据和恒星光谱库(BRASS)旨在为可用于定量光谱学的原子数据提供大型系统且均质的质量评估。 BRASS必须对大约20颗明亮的BAFGK光谱型恒星,以约8.5万的分辨率和〜1000的信噪比,将合成光谱与极高质量的观测光谱进行比较,以便严格评估可用于一千条可能有用的光谱线。方法 。通过合成包括太阳在内的FGK型恒星的文献原子线的理论光谱,对原子线进行大规模的均匀选择,从而选择了波长范围为4200–6800?的1091个理论上较深且未混合的谱线,这可能适合进行质量评估。使用两种常用方法确定1091跃迁的天体对数log(g?f)值。这些log(g?f)值的一致性用于选择行为良好的行以进行质量评估。结果。我们发现845条原子线适合进行质量评估,其中408条原子线对分析方法之间的系统差异具有较强的抵抗力。发现约53%的质量评估品系至少具有一个与我们的推导值一致的文献log(g?f)值,尽管其余值可能相差0.5 dex。仅铁的〜38%?发现I线具有足够准确的log(g?f)值,对于其余的Fe组线,其值增加到〜70–75%。

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