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Improved TiII log(gf) values and abundance determinations in the photospheres of the sun and metal-poor star HD 84937

机译:改进的TiII log(gf)值和太阳和贫金属恒星HD 84937的光球中的丰度测定

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Atomic transition probability measurements for 364 lines of Ti II in the UV through near-IR are reported. Branching fractions from data recorded using a Fourier transform spectrometer (FTS) and a new echelle spectrometer are combined with published radiative lifetimes to determine these transition probabilities. The new results are in generally good agreement with previously reported FTS measurements. Use of the new echelle spectrometer, independent radiometric calibration methods, and independent data analysis routines enables a reduction of systematic errors and overall improvement in transition probability accuracy over previous measurements. The new Ti II data are applied to high-resolution visible and UV spectra of the Sun and metal-poor star HD 84937 to derive new, more accurate Ti abundances. Lines covering a range of wavelength and excitation potential are used to search for non-LTE effects. The Ti abundances derived using Ti II for these two stars match those derived using Ti I and support the relative Ti/Fe abundance ratio versus metallicity seen in previous studies.
机译:通过近红外光谱报告了紫外中364条Ti II原子的原子跃迁几率。使用傅里叶变换光谱仪(FTS)和新的echelle光谱仪记录的数据中的分支分数与已公布的辐射寿命相结合,以确定这些跃迁概率。新结果与先前报道的FTS测量结果总体上吻合良好。与以前的测量相比,使用新的echelle光谱仪,独立的辐射校准方法和独立的数据分析例程可以减少系统误差,并全面提高转换概率的准确性。新的Ti II数据应用于太阳和贫金属恒星HD 84937的高分辨率可见光和UV光谱,以得出新的,更准确的Ti丰度。覆盖一定范围的波长和激发电势的线用于搜索非LTE效应。使用Ti II得出的这两颗恒星的Ti丰度与使用Ti I得出的Ti丰度匹配,并支持先前研究中看到的相对Ti / Fe丰度比与金属度的关系。

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