论文标题
带有狼射线型中心星的行星星云 - I.高激发NGC 2371的情况
Planetary nebulae with Wolf-Rayet-type central stars -- I. The case of the high-excitation NGC 2371
论文作者
论文摘要
我们介绍了[Wolf-Rayet]([WR])Star WD 0722 $+$ 295周围的行星星云(PN)NGC 2371的分析。 Our Isaac Newton Telescope (INT) Intermediate Dispersion Spectrograph (IDS) spectra, in conjunction with archival optical and UV images, unveil in unprecedented detail the high-ionisation of NGC 2371. The nebula has an apparent multipolar morphology, with two pairs of lobes protruding from a barrel-like central cavity, a pair of dense low-ionisation knots与嵌入中央腔中的对称轴未对准,并在HE II中主要检测到高激发光环。类似桶状的中央腔和密集结的丰度与[WR]型CSPNE的其他pne的大量确定。我们建议NGC 2371内的最密集结是最古老的结构,是密集的赤道结构的残余,而主壳壳和外裂是由于后一种射血而导致了恒星演化的终止。对我们高质量光谱产生的位置图的分析表明,NGC 2371具有双极形状,每个叶子都会从类似桶状的中央区域伸出一个双层结构。 WD 0722 $+$ 295的光谱的分析产生了与先前报道的类似的恒星参数。我们证实,光谱子类型与[WO1]类型相对应。
We present the analysis of the planetary nebula (PN) NGC 2371 around the [Wolf-Rayet] ([WR]) star WD 0722$+$295. Our Isaac Newton Telescope (INT) Intermediate Dispersion Spectrograph (IDS) spectra, in conjunction with archival optical and UV images, unveil in unprecedented detail the high-ionisation of NGC 2371. The nebula has an apparent multipolar morphology, with two pairs of lobes protruding from a barrel-like central cavity, a pair of dense low-ionisation knots misaligned with the symmetry axis embedded within the central cavity, and a high excitation halo mainly detected in He II. The abundances from the barrel-like central cavity and dense knots agree with abundance determinations for other PNe with [WR]-type CSPNe. We suggest that the densest knots inside NGC 2371 are the oldest structures, remnant of a dense equatorial structure, whilst the main nebular shell and outer lobes resulted from a latter ejection that ended the stellar evolution. The analysis of position-velocity diagrams produced from our high-quality spectra suggests that NGC 2371 has a bipolar shape with each lobe presenting a double-structure protruding from a barrel-like central region. The analysis of the spectra of WD 0722$+$295 results in similar stellar parameters as previously reported. We corroborate that the spectral sub-type corresponds with a [WO1] type.