论文标题

H $α$通量和行星星云的灭绝距离

H$α$ fluxes and extinction distances for planetary nebulae in the IPHAS survey of the Northern Galactic Plane

论文作者

Dharmawardena, Thavisha E., Barlow, M. J., Drew, J. E., Seales, A., Sale, S. E., Jones, D., Mampaso, A., Parker, Q. A., Sabin, L., Wesson, R.

论文摘要

我们报告了使用IPHAS调查中的成像数据获得的197北半球行星星云(PNE)的H $α$滤波器光度法。 h $α$+[n ii]通量是针对IPHAS调查发现的46个确认或可能的PNE的,对于151个先前分类的PNE,它落在IPHASS调查的北银河流领域内。在纠正了IPHAS H $α$过滤器接收的[N II]排放之后,由此产生的H $α$通量与已发表的无广播免费通量和H $β$通量相结合,以估计使用其集成的Balmer Line Flux和其extruction-Frovion-Foodruction-Fooden-Fore-Fromuction-Fooden-Fooden-Fooden-Fooden-Fooden-Foode-Froux-fluxs估算143 PNE的光学灭绝。然后使用三种不同的3D星际尘埃灭绝映射方法估算到PNE的距离,包括基于IPHE的H-Mead Salem(2014)。这些方法用于绘制灰尘灭绝与视力线与PNE的距离关系。衍生尘埃光学灭绝的截距允许推断与PNE的距离。对于我们样品可靠的Gaia Dr2距离中的PNE中的17个,已将其与使用三种不同的消光映射算法得出的距离进行了比较,以及与Nebular Radius vs. H $α$α$表面亮度关系的距离。 (2016)。该关系和H-mead灭绝映射算法与Gaia DR2距离产生了最接近的一致性。

We report H$α$ filter photometry for 197 northern hemisphere planetary nebulae (PNe) obtained using imaging data from the IPHAS survey. H$α$+[N II] fluxes were measured for 46 confirmed or possible PNe discovered by the IPHAS survey and for 151 previously catalogued PNe that fell within the area of the northern Galactic Plane surveyed by IPHAS. After correcting for [N II] emission admitted by the IPHAS H$α$ filter, the resulting H$α$ fluxes were combined with published radio free-free fluxes and H$β$ fluxes, in order to estimate mean optical extinctions to 143 PNe using ratios involving their integrated Balmer line fluxes and their extinction-free radio fluxes. Distances to the PNe were then estimated using three different 3D interstellar dust extinction mapping methods, including the IPHAS-based H-MEAD algorithm of Sale (2014). These methods were used to plot dust extinction versus distance relationships for the lines of sight to the PNe; the intercepts with the derived dust optical extinctions allowed distances to the PNe to be inferred. For 17 of the PNe in our sample reliable Gaia DR2 distances were available and these have been compared with the distances derived using three different extinction mapping algorithms as well as with distances from the nebular radius vs. H$α$ surface brightness relation of Frew et al. (2016). That relation and the H-MEAD extinction mapping algorithm yielded the closest agreement with the Gaia DR2 distances.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源