论文标题

边缘星系中灰尘的分布:I。全球结构

The distribution of dust in edge-on galaxies: I. The global structure

论文作者

Mosenkov, Aleksandr V., Usachev, Pavel A., Shakespear, Zacory, Guerrette, Jacob, Baes, Maarten, Bianchi, Simone, Xilouris, Emmanuel M., Gontcharov, George A., Il'in, Vladimir B., Marchuk, Alexander A., Savchenko, Sergey S., Smirnov, Anton A.

论文摘要

在第一篇文章中,我们介绍了附近边缘螺旋星系中全球粉尘发射分布的研究。我们的样本由16个棱角大,较少的空间分辨星系组成,从Dustpedia样品中选择。为了探索灰尘排放分布,我们利用100-500 $ $ $ m的HERSCHEL光度法。我们采用Sérsic和三维光盘模型来符合观察到的星系的二维曲线。两种方法都会产生相似的结果。我们的分析明确地指出了在6至10个大星系中存在外粉尘的情况。结果表明,圆盘尺度的长度和高度都随波长在100至500 $μm之间的函数而增加。尘埃尺度的高度与灰尘盘尺度长度呈正相关,类似于恒星盘的观察到。我们还发现近红外和远红外的尺度长度和比例高度之间的相关性,这表明恒星盘及其尘埃对应物紧密连接。此外,灰尘盘的固有变平与最大旋转速度和银河系的灰尘质量成反比:平均而言,更大的螺旋星系宿主相对较薄,灰尘盘则相对较薄。同样,尘埃与恒星尺度的高度比率随着尘埃质量和旋转速度降低的趋势。我们得出的结论是,低质量的螺旋星系设有一个散布,膨胀的灰尘盘,其厚度与恒星盘相似。

In this first paper in a series we present a study of the global dust emission distribution in nearby edge-on spiral galaxies. Our sample consists of 16 angularly large and 13 less spatially resolved galaxies selected from the DustPedia sample. To explore the dust emission distribution, we exploit the Herschel photometry in the range 100-500 $μ$m. We employ Sérsic and three-dimensional disc models to fit the observed two-dimensional profiles of the galaxies. Both approaches give similar results. Our analysis unequivocally states the case for the presence of extraplanar dust in between 6 to 10 large galaxies. The results reveal that both the disc scale length and height increase as a function of wavelength between 100 and 500 $μ$m. The dust disc scale height positively correlates with the dust disc scale length, similar to what is observed for the stellar discs. We also find correlations between the scale lengths and scale heights in the near- and far-infrared which suggest that the stellar discs and their dust counterparts are tightly connected. Furthermore, the intrinsic flattening of the dust disc is inversely proportional to the maximum rotation velocity and the dust mass of the galaxy: more massive spiral galaxies host, on average, relatively thinner dust discs. Also, there is a tendency for the dust-to-stellar scale height ratio to decrease with the dust mass and rotation velocity. We conclude that low-mass spiral galaxies host a diffuse, puffed-up dust disc with a thickness similar to that of the stellar disc.

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