论文标题

使用多个排放线比限制灰尘衰减法的斜率

Using Multiple Emission Line Ratios to Constrain the Slope of the Dust Attenuation Law

论文作者

Prescott, Moire K. M., Finlator, Kristian M., Cleri, Nikko J., Trump, Jonathan R., Papovich, Casey

论文摘要

我们探讨了使用三线方法测量单个星系中尘埃衰减定律的斜率和标准化的可能性和实际局限性。为此,我们专注于从SLIT光谱的现有基于地面的Balmer H $α$和H $β$测量的11个星系样本,以及对Paschen-$β$的空间grism限制。考虑到观察性不确定性时,我们表明一个星系在理论论点所期望的范围内具有良好的灰尘定律斜率和归一化。因此,该银河系提供了一个例子,说明了将来可能的可能性。但是,大多数星系是通过异常陡峭或浅坡最适合的。然后,我们探讨了其他天体物理效应或观察性偏见是否可以解释升高的paschen-$β$/h $α$α$比率驱动这些结果。我们发现,具有较高paschen-$β$/h $α$比率的星系可以通过覆盖分数的略微亚单位($> $ 97%)来解释。另外,不同线的不同缝隙损失可能会对结果产生很大的影响,从而强调了以一致的光谱光圈测量所有这三个线的重要性。我们得出的结论是,尽管在个别星系中限制尘埃衰减定律形状的三线方法是有希望的,但需要进行深刻的观察,并且需要一致的观察策略来最大程度地减少观察性偏见,并消除不同覆盖部分的天体物理有趣的效果。詹姆斯·韦伯(James Webb)太空望远镜将对Balmer和Paschen线的星系为$ z \ of0.3-2 $提供更敏感的测量,从而对光界面的灰尘衰减定律及其内在变化产生统一的约束。

We explore the possibility and practical limitations of using a three-line approach to measure both the slope and normalization of the dust attenuation law in individual galaxies. To do this, we focus on a sample of eleven galaxies with existing ground-based Balmer H$α$ and H$β$ measurements from slit spectra, plus space-based grism constraints on Paschen-$β$. When accounting for observational uncertainties, we show that one galaxy has a well-constrained dust law slope and normalization in the range expected from theoretical arguments; this galaxy therefore provides an example of what may be possible in the future. However, most of the galaxies are best-fit by unusually steep or shallow slopes. We then explore whether additional astrophysical effects or observational biases could explain the elevated Paschen-$β$/H$α$ ratios driving these results. We find that galaxies with high Paschen-$β$/H$α$ ratios may be explained by slightly sub-unity covering fractions ($>$97%). Alternatively, differing slit losses for different lines can have a large impact on the results, emphasizing the importance of measuring all three lines with a consistent spectroscopic aperture. We conclude that while the three-line approach to constraining the shape of the dust attenuation law in individual galaxies is promising, deep observations and a consistent observational strategy will be required to minimize observational biases and to disentangle the astrophysically interesting effect of differing covering fractions. The James Webb Space Telescope will provide more sensitive measurements of Balmer and Paschen lines for galaxies at $z\approx0.3-2$, enabling uniform constraints on the optical-infrared dust attenuation law and its intrinsic variation.

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