论文标题
lamost的Cygnus循环的无偏光谱研究。 I.发射线和全局光谱的光学特性
Unbiased Spectroscopic Study of the Cygnus Loop with LAMOST. I. Optical Properties of Emission Lines and the Global Spectrum
论文作者
论文摘要
我们使用大型天空区域多对象光纤光谱望远镜(Lamost)DR5提出了银河超新星残留(SNR)Cygnus环的无偏光谱研究。 Lamost具有大型视野和一个大光圈,这使我们可以同时获得4000个光谱,以$ \ sim $3700-9000ÅR$ \ $ \ $ \ $ 1800。 Cygnus循环是中年SNR的原型,其优点是明亮,角度较大,并且相对不受灰尘的影响。沿着视线到Cygnus循环,总共发现了2747 Lamost DR5光谱,它们在整个残留物上都在空间上分布。该光谱样本没有大多数先前研究的选择偏差,这些研究通常集中在[O III]中明亮的细丝或区域。视觉检查验证了368个光谱(总计13 $ \%$)显示清晰的光谱特征,以确认其与残留物的关联。此外,具有线排放的176个光谱显示出其起源的歧义,但可能与SNR有关联。特别是,通过识别排放线并测量其强度,进一步分析了以SNR发射为主的154个光谱。我们使用理论模型检查了物理特性(例如电子密度和温度)的分布,这些分布在残留物内有很大变化。通过组合大量的杆光谱,构建了代表Cygnus环的全局光谱,该光谱构建了辐射冲击的特征。最后,我们讨论了无偏光谱样品对全局光谱的影响及其对理解遥远星系中空间未解决的SNR的影响。
We present an unbiased spectroscopic study of the Galactic supernova remnant (SNR) Cygnus Loop using the Large Sky Area Multi-object Fiber Spectroscopic Telescope (LAMOST) DR5. LAMOST features both a large field of view and a large aperture, which allow us to simultaneously obtain 4000 spectra at $\sim$3700-9000 Åwith R$\approx$1800. The Cygnus Loop is a prototype of middle-aged SNRs, which has the advantages of being bright, large in angular size, and relatively unobscured by dust. Along the line of sight to the Cygnus Loop, 2747 LAMOST DR5 spectra are found in total, which are spatially distributed over the entire remnant. This spectral sample is free of the selection bias of most previous studies, which often focus on bright filaments or regions bright in [O III]. Visual inspection verifies that 368 spectra (13$\%$ of the total) show clear spectral features to confirm their association with the remnant. In addition, 176 spectra with line emission show ambiguity of their origin but have a possible association to the SNR. In particular, the 154 spectra dominated by the SNR emission are further analyzed by identifying emission lines and measuring their intensities. We examine distributions of physical properties such as electron density and temperature, which vary significantly inside the remnant, using theoretical models. By combining a large number of the LAMOST spectra, a global spectrum representing the Cygnus Loop is constructed, which presents characteristics of radiative shocks. Finally, we discuss the effect of the unbiased spectral sample on the global spectrum and its implication to understand a spatially unresolved SNR in a distant galaxy.