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THE ABUNDANCE OF FLUORINE IN NORMAL G AND K STARS OF THE GALACTIC THIN DISK

机译:银河系薄盘正常G和K星中的氟含量

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The abundance of fluorine is determined from the (2-0) R9 2.3358 μm feature of the molecule HF for several dozen normal G and K stars in the Galactic thin disk from spectra obtained with the Phoenix IR spectrometer on the 2.1 m telescope at Kitt Peak. The abundances are analyzed in the context of Galactic chemical evolution to explore the contributions of supernovae and asymptotic giant branch (AGB) stars to the abundance of fluorine in the thin disk. The average abundance of fluorine in the thin disk is found to be [F/Fe] = +0.23 ± 0.03, and the [F/Fe] ratio is flat or declines slowly with metallicity in the range from –0.6 [Fe/H] +0.3, within the limits of our estimated uncertainty. The measured abundance of fluorine and lack of variation with metallicity in Galactic thin disk stars suggest neutrino spallation in Type II supernovae contributes significantly to the Galactic fluorine abundance, although contributions from AGB stars may also be important.
机译:根据在基特峰2.1 m望远镜上使用Phoenix Phoenix光谱仪获得的光谱,从银河薄盘中数十个正常G和K恒星的HF分子的(2-0)R9 2.3358μm特征确定了氟的丰度。在银河化学演化的背景下分析了丰度,以探索超新星和渐近巨星(AGB)恒星对薄盘中氟的丰度的贡献。发现薄盘中氟的平均丰度为[F / Fe] = +0.23±0.03,并且[F / Fe]比平坦或缓慢下降,金属度范围为–0.6 <[Fe / H] ] <+0.3,在我们估计的不确定性范围内。在银河系薄盘恒星中测得的氟丰度和金属含量的变化不明显,表明II型超新星的中微子剥落对银河系氟丰度有显着贡献,尽管来自AGB恒星的贡献也可能很重要。

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