3D non-LTE Ca II line formation in metal-poor FGK stars

IF 5.4 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
C. Lagae, A. M. Amarsi, K. Lind
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Abstract

Context. The Ca II near-ultraviolet resonance doublet (H&K) and the near-infrared triplet (CaT) are among the strongest features in stellar spectra of FGK-type stars. These spectral lines remain prominent down to extremely low metallicities and are thus useful for providing stellar parameters via ionisation balance, for Galactic chemical evolution, and as radial velocity diagnostics. However, the majority of studies that model these lines in late-type stars still rely on simplified one-dimensional (1D) hydrostatic model atmospheres and the assumption of local thermodynamic equilibrium (LTE).Aims. We present 3D non-LTE radiative transfer calculations of the CaT and H&K lines in an extended grid of 3D model atmospheres of a metal-poor FGK type. We investigated the impact of 3D non-LTE effects on abundances, line bisectors, and radial velocities.Methods. We used a subset of 3D model atmospheres from the recently published STAGGER-grid to synthesise spectra in 3D (non-)LTE with Balder for nine different calcium-to-iron ratios. For comparison, similar calculations were performed in 1D (non-)LTE using models from the MARCS grid.Results. Abundance corrections for the CaT lines relative to 1D LTE range from +0.1≳Δ1L3N≳−1.0 dex, with more severe corrections for strong lines in giants. With fixed line strength, the abundance corrections become more negative with increasing effective temperature and decreasing surface gravity. Radial velocity corrections relative to 1D LTE based on cross-correlation of the whole line profile range from −0.2 kms−1 to +1.5 kms−1, with more severe corrections where the CaT lines are strongest. The corrections are even more severe if the line core alone is used to infer the radial velocity.Conclusions. The line strengths and shapes, and consequently the abundance and radial velocity corrections, are strongly affected by the chosen radiative transfer assumption, 1/3D (non)-LTE. We release grids of theoretical spectra that can be used to improve the accuracy of stellar spectroscopic analyses based on the Ca II triplet lines.
在缺乏金属的FGK恒星中形成的3D非lte Ca II线
上下文。Ca II型近紫外共振重态(H&K)和近红外三重态(CaT)是fgk型恒星光谱中最强的特征。这些光谱线在金属丰度极低的情况下仍然很突出,因此可以通过电离平衡、银河系化学演化和径向速度诊断来提供恒星参数。然而,大多数在晚型恒星中模拟这些线的研究仍然依赖于简化的一维(1D)流体静力模型大气和局部热力学平衡(LTE)假设。我们提出了在金属贫乏的FGK型三维模型大气的扩展网格中CaT和H&K线的3D非lte辐射传输计算。我们研究了3D非lte效应对丰度、线平分线和径向速度的影响。我们使用最近发表的stagger网格中的3D模型大气子集,与Balder一起合成了9种不同钙铁比的3D(非)LTE光谱。为了进行比较,使用MARCS网格模型在1D(非)LTE中进行了类似的计算。相对于1D LTE, CaT谱线的丰度校正范围为+0.1±Δ1L3N±1.0,对于巨行星中的强谱线,校正更为严重。在线强度固定的情况下,丰度修正量随着有效温度的升高和地表重力的减小而趋于负。相对于1D LTE的径向速度校正基于整条线轮廓的相互关系,范围从−0.2 km−1到+1.5 km−1,在CaT线最强的地方校正更严重。如果仅使用线芯来推断径向速度,则修正更为严重。所选择的辐射传输假设1/3D(非)-LTE强烈地影响了线的强度和形状,从而影响了丰度和径向速度修正。我们发布了理论光谱网格,可用于提高基于Ca II三重线的恒星光谱分析的精度。
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来源期刊
Astronomy & Astrophysics
Astronomy & Astrophysics 地学天文-天文与天体物理
CiteScore
10.20
自引率
27.70%
发文量
2105
审稿时长
1-2 weeks
期刊介绍: Astronomy & Astrophysics is an international Journal that publishes papers on all aspects of astronomy and astrophysics (theoretical, observational, and instrumental) independently of the techniques used to obtain the results.
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