论文标题
晶粒尺寸分布和组成对灰尘灭绝与发射率之间相关性的含义
Implications of Grain Size Distribution and Composition for the Correlation Between Dust Extinction and Emissivity
论文作者
论文摘要
我们研究了灰尘尺寸分布和组成的变化对灭绝频谱形状之间的相关性的影响(由$ r _ {\ textrm {v}} $参数化)和远红粉尘发射率(由PowerLaw Laws Index $β$参数化)。从Weingartner&Draine(2001)提出的尺寸分布模型开始,使用Laor&Draine(1993)衍生出的碳和硅酸盐晶粒的粉尘吸收和发射特性,以及Li&Draine(2001)对PAH Grains衍生出的粉尘和发射特性,我们计算了灭绝并与Schlafly Al Al Al Al Al Al的灭绝和比较。 (2016)。优化器和MCMC用于探索大小分布的可用参数的空间。我们发现较大的谷物与高$ r _ {\ textrm {v}} $相关。但是,这种趋势不足以解释Schlafly等人观察到的发射膨胀相关性。 (2016)。对于$ r _ {\ textrm {v}} - β$与出现的相关性,我们需要对碳质和硅酸盐体积先验施加明确的先验,作为$ r _ {\ textrm {v}} $的功能。结果表明,具有较高碳质与硅酸盐谷物比率更高的成分导致$ r _ {\ textrm {v}} $和较低的$β$。 $ e(\ textrm {b} - \ textrm {v})/τ_{353} $和$ r _ {\ textrm {v}} $之间的关系是显而易见的,可能会影响基于排放的防尘图的重新校准$ r _ {
We study the effect of variations in dust size distribution and composition on the correlation between the spectral shape of extinction (parameterized by $R_{\textrm{V}}$) and far-infrared dust emissivity (parameterized by the power-law index $β$). Starting from the size distribution models proposed by Weingartner & Draine (2001), using the dust absorption and emission properties derived by Laor & Draine (1993) for carbonaceous and silicate grains, and by Li & Draine (2001) for PAH grains, we calculate the extinction and compare it with the reddening vector derived by Schlafly et al. (2016). An optimizer and an MCMC are used to explore the space of available parameters for the size distributions. We find that larger grains are correlated with high $R_{\textrm{V}}$. However, this trend is not enough to explain the emission-extinction correlation observed by Schlafly et al. (2016). For the $R_{\textrm{V}}-β$ correlation to arise, we need to impose explicit priors for the carbonaceous and silicate volume priors as functions of $R_{\textrm{V}}$. The results show that a composition with higher ratio of carbonaceous to silicate grains leads to higher $R_{\textrm{V}}$ and lower $β$. A relation between $E(\textrm{B}-\textrm{V})/τ_{353}$ and $R_{\textrm{V}}$ is apparent, with possible consequences for the recalibration of emission-based dust maps as a function of $R_{\textrm{V}}$.