Wang Ella Xi, Nordlander Thomas, Asplund Martin, Amarsi Anish M, Lind Karin, Zhou Yixiao
Research School of Astronomy and Astrophysics, Australian National University, Canberra, ACT 2611, Australia.
Max Planck Institute for Astrophysics, Karl-Schwarzschild-Str. 1, D-85741 Garching, Germany.
Mon Not R Astron Soc. 2021 Jan;500(2):2159-2176. doi: 10.1093/mnras/staa3381. Epub 2020 Oct 31.
Accurately known stellar lithium abundances may be used to shed light on a variety of astrophysical phenomena such as big bang nucleosynthesis, radial migration, ages of stars and stellar clusters, and planet engulfment events. We present a grid of synthetic lithium spectra that are computed in non-local thermodynamic equilibrium (NLTE) across the stagger grid of three-dimensional (3D) hydrodynamic stellar atmosphere models. This grid covers three Li lines at 610.4, 670.8, and 812.6 nm for stellar parameters representative of FGK-type dwarfs and giants, spanning = 4000-7000 K, log = 1.5-5.0, [Formula: see text]-0.5, and A(Li) = -0.5-4.0. We find that our abundance corrections are up to 0.15 dex more negative than in previous work, due to a previously overlooked NLTE effect of blocking of UV lithium lines by background opacities, which has important implications for a wide range of science cases. We derive a new 3D NLTE solar abundance of A(Li) = 0.96 ± 0.05, which is 0.09 dex lower than the commonly used value. We make our grids of synthetic spectra and abundance corrections publicly available through the breidablik package. This package includes methods for accurately interpolating our grid to arbitrary stellar parameters through methods based on Kriging (Gaussian process regression) for line profiles, and multilayer perceptrons (a class of fully connected feedforward neural networks) for NLTE corrections and 3D NLTE abundances from equivalent widths, achieving interpolation errors of the order of 0.01 dex.
准确已知的恒星锂丰度可用于阐明各种天体物理现象,如大爆炸核合成、径向迁移、恒星和星团的年龄以及行星吞噬事件。我们展示了一组合成锂光谱网格,这些光谱是在非局部热力学平衡(NLTE)条件下,通过三维(3D)流体动力学恒星大气模型的交错网格计算得出的。该网格涵盖了代表FGK型矮星和巨星的恒星参数下,位于610.4、670.8和812.6纳米处的三条锂线,参数范围为T eff = 4000 - 7000 K,log g = 1.5 - 5.0,[Fe/H] = - 0.5,以及A(Li) = - 0.5 - 4.0。我们发现,由于之前被忽视的背景不透明度对紫外锂线的阻挡这一NLTE效应,我们的丰度修正比之前的工作最多负0.15 dex,这对广泛的科学案例具有重要意义。我们推导出一个新的3D NLTE太阳锂丰度A(Li) = 0.96 ± 0.05,比常用值低0.09 dex。我们通过breidablik软件包公开提供我们的合成光谱和丰度修正网格。该软件包包括通过基于克里金法(高斯过程回归)对线轮廓进行精确插值以及通过多层感知器(一类全连接前馈神经网络)对NLTE修正和从等效宽度计算3D NLTE丰度等方法,将插值误差控制在0.01 dex量级。