首页> 外文期刊>The Astrophysical journal >METAL-POOR DWARF GALAXIES IN THE SIGRID GALAXY SAMPLE. II. THE ELECTRON TEMPERATURE-ABUNDANCE CALIBRATION AND THE PARAMETERS THAT AFFECT IT
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METAL-POOR DWARF GALAXIES IN THE SIGRID GALAXY SAMPLE. II. THE ELECTRON TEMPERATURE-ABUNDANCE CALIBRATION AND THE PARAMETERS THAT AFFECT IT

机译:SIGRID星系样本中的贫金属矮星系。二。电子温度-丰度校准及其影响的参数

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In this paper, we use the Mappings photoionization code to explore the physical parameters that impact on the measurement of electron temperature and abundance in H II regions. In our previous paper, we presented observations and measurements of physical properties from the spectra of 17 H II regions in 14 isolated dwarf irregular galaxies from the SIGRID sample. Here, we analyze these observations further, together with three additional published data sets. We explore the effects of optical thickness, electron density, ionization parameter, ionization source, and non-equilibrium effects on the relation between electron temperature and metallicity. We present a standard model that fits the observed data remarkably well at metallicities between one-tenth and 1 solar. We investigate the effects of optically thin H II regions, and show that they can have a considerable effect on the measured electron temperature, and that there is evidence that some of the observed objects are optically thin. We look at the role of the ionization parameter and find that lower ionization parameter values give better fits at higher oxygen abundance. We show that higher pressures combined with low optical depth, and also κ electron energy distributions at low κ values, can generate the apparent high electron temperatures in low-metallicity H II regions, and that the former provides the better fit to observations. We examine the effects of these parameters on the strong line diagnostic methods. We extend this to three-dimensional diagnostic grids to confirm how well the observations are described by the grids.
机译:在本文中,我们使用Mappings光电离代码来探索影响H II区电子温度和丰度测量的物理参数。在我们之前的文章中,我们从SIGRID样本中的14个孤立的矮人不规则星系中的17个H II区的光谱中提出了对物理性质的观察和测量。在这里,我们将进一步分析这些观察结果,以及另外三个已发布的数据集。我们探索了光学厚度,电子密度,电离参数,电离源和非平衡效应对电子温度和金属度之间关系的影响。我们提出了一个标准模型,该模型在十分之一和1个太阳能之间的金属度下非常适合观察到的数据。我们研究了光学上较薄的H II区域的影响,并表明它们可以对测得的电子温度产生相当大的影响,并且有证据表明某些观察到的物体在光学上较薄。我们研究了电离参数的作用,发现较低的电离参数值在较高的氧丰度下具有更好的拟合度。我们表明,较高的压力加上较低的光学深度,以及较低κ值的κ电子能量分布,都可以在低金属H II区产生明显的高电子温度,并且前者更适合观察。我们检查了这些参数对强线诊断方法的影响。我们将其扩展到三维诊断网格,以确认网格对观察结果的描述程度。

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