论文标题

狼射线星云M1-67中的灰尘

Dust in the Wolf-Rayet Nebula M1-67

论文作者

Jiménez-Hernández, P., Arthur, S. J., Toalá, J. A.

论文摘要

WR124周围周围的狼射线星云M1-67位于大多数星际介质的区域的银河平面上方,这使其成为研究与大型星星进化的晚期相关的质量损失发作的理想目标。 Wise,Spitzer(MIPS)和Herschel(PACS和Spire)的存档光度观测用于在12-500 $ $ m的波长范围内构建星云的光谱能量分布(SED)。来自文献的红外(光度法和光谱)数据和NEBULAR光学数据是使用光谱合成代码云模型对文献进行建模的,其中自由参数是气体密度分布和灰尘晶粒尺寸分布。红外SED可以由具有两个尺寸分布的尘土谷物复制:MRN幂律分布,晶粒尺寸在0.005至0.05 $μm和一个大晶粒中,具有代表性尺寸为0.9 $ $ $ m的大型谷物。后者指向M1-67形成的爆发起源。该模型预测一个nebular离子气体质量为$ M_ \ MATHRM {ion} = 9.2^{+1.6} _ { - 1.5}〜\ Mathrm {M} _ \ odot $,估计的质量 - 量质量和估计的质量 - 质量率是$ \ dot $ \ dot $ \ dot {m} \ od {m} \ Yout Times \ 4 \ Mathrm {M} _ \ odot $ yr $^{ - 1} $。我们讨论了我们的结果在单一和二进制恒星进化的背景下的含义,并提出M1-67代表了大型恒星中普通后的信封情景的最佳候选者。

The Wolf-Rayet nebula M1-67 around WR124 is located above the Galactic plane in a region mostly empty of interstellar medium, which makes it the perfect target to study the mass-loss episodes associated with the late stages of massive star evolution. Archive photometric observations from WISE, Spitzer (MIPS) and Herschel (PACS and SPIRE) are used to construct the spectral energy distribution (SED) of the nebula in the wavelength range of 12-500$μ$m. The infrared (photometric and spectroscopic) data and nebular optical data from the literature are modeled simultaneously using the spectral synthesis code Cloudy, where the free parameters are the gas density distribution and the dust grain size distribution. The infrared SED can be reproduced by dust grains with two size distributions: a MRN power-law distribution with grain sizes between 0.005 and 0.05$μ$m and a population of large grains with representative size 0.9$ μ$m. The latter points towards an eruptive origin for the formation of M1-67. The model predicts a nebular ionized gas mass of $M_\mathrm{ion} = 9.2^{+1.6}_{-1.5}~\mathrm{M}_\odot$ and the estimated mass-loss rate during the dust-formation period is $\dot{M} \approx 6 \times 10^{-4} \mathrm{M}_\odot$yr$^{-1}$. We discuss the implications of our results in the context of single and binary stellar evolution and propose that M1-67 represents the best candidate for a post-common envelope scenario in massive stars.

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