论文标题
狭缝和IFU光谱的星系星际气体中基于校准的丰度
Calibration-based abundances in the interstellar gas of galaxies from slit and IFU spectra
论文作者
论文摘要
在这项工作中,我们利用可用的积分场单元(IFU)光谱和附近几个星系的缝隙光谱。使用具有高质量狭缝光谱的HII区域来构建用于丰度确定的经验R和S校准。在本文中,我们测试了这些校准对IFU光谱的适用性。我们估计了使用IFU和SLIT光谱法获得的基于校准的丰度,用于八个附近的星系。确定并比较了星系的分数半径Rg(标准归归量)的槽中缝隙和基于IFU光谱的中值。我们发现,通过R校准获得的IFU和基于SLIT光谱的丰度彼此接近,丰度差异的平均值为0.005 DEX,差异的散布为38个数据点的散布为0.037 DEX。 S校准可以在高金属率下系统地低估基于IFU的基于IFU光谱的丰度,差异的平均值为21个数据标记的-0.059 DEX,而在金属较低的金属率下,差异的平均值为-0.018 DEX,散点为36个数据点的散点为0.045 DEX。这证明了R校准比S校准产生的狭缝和IFU光谱之间的丰度估计更高。我们发现,使用具有不同空间分辨率和不同空间采样的IFU光谱,相同的校准可以对丰度进行仔细估计。这与最近的发现一致,即扩散离子气体对HII区域的大光谱的贡献具有次要效应。
In this work we make use of available Integral Field Unit (IFU) spectroscopy and slit spectra of several nearby galaxies. The pre-existing empirical R and S calibrations for abundance determinations are constructed using a sample of HII regions with high quality slit spectra. In this paper, we test the applicability of those calibrations to the IFU spectra. We estimate the calibration-based abundances obtained using both the IFU and the slit spectroscopy for eight nearby galaxies. The median values of the slit and IFU spectra-based abundances in bins of 0.1 in fractional radius Rg (normalized to the optical radius) of a galaxy are determined and compared. We find that the IFU and the slit spectra-based abundances obtained through the R calibration are close to each other, the mean value of the differences of abundances is 0.005 dex and the scatter in the differences is 0.037 dex for 38 datapoints. The S calibration can produce systematically underestimated values of the IFU spectra-based abundances at high metallicities, the mean value of the differences is -0.059 dex for 21 datapoints, while at lower metallicities the mean value of the differences is -0.018 dex and the scatter is 0.045 dex for 36 data points. This evidences that the R calibration produces more consistent abundance estimations between the slit and the IFU spectra than the S calibration. We find that the same calibration can produce close estimations of the abundances using IFU spectra obtained with different spatial resolution and different spatial samplings. This is in line with the recent finding that the contribution of the diffuse ionized gas to the large aperture spectra of HII regions has a secondary effect.