超新星遗迹G292.0+1.8的元素丰度:大质量祖先的证据

J. Hughes, K. P. Singh
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引用次数: 44

摘要

我们对来自爱因斯坦天文台和EXOSAT的超新星遗迹G292.0+1.8的x射线光谱数据进行了全面的非平衡电离(NEI)分析。单温度、单时间尺度的NEI模型可以很好地描述该光谱,其中kT = 1.64(sub -0.19)(sup +0.29) keV, n(sub e)t = (5.55(sub -1.12)(sup +1.2) x 10(exp 10)s/cu cm,这表明该残余物确实是年轻的,并且在其x射线光谱的演化阶段处于电离阶段。我们确定了元素O、Ne、Mg、Si、S、Ar和Fe的丰度,并检查了它们在允许的柱密度、kT和n(sub e)t范围内的变化。对25太阳质量的前体核合成的数值计算与拟合的丰度最吻合;事实上,该模型与推导出的丰度之间的最小RMS百分比差异仅为15%。根据拟合的发射测量和遗迹的简单几何模型,我们估计x射线发射等离子体的质量为9.3(sub -6.2)(sup +1.19)太阳质量,假设距离为4.8 +/- 1.6 kpc。对这个质量估计的额外误差,例如,来自喷射物的聚集,可能是相当大的。基于对不同种类的单个电离时间尺度的分析,没有发现等离子体的热力学状态作为元素组成函数的差异的证据。从这个意义上说,G292.0+1.8类似于残余的Cas A(另一个大质量恒星超新星的产物),而它不同于SN 1572(第谷)和SN 1006的残余,这两个都被认为是来自Ia型超新星。
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Elemental abundances of the supernova remnant G292.0+1.8: evidence for a massive progenitor
We present a comprehensive nonequilibrium ionization (NEI) analysis of X-ray spectral data from the Einstein Observatory and EXOSAT for the supernova remnant G292.0+1.8. The spectra are well described by a single-temperature, single-timescale NEI model with kT = 1.64(sub -0.19)(sup +0.29) keV and n(sub e)t = (5.55(sub -1.12)(sup +1.2) x 10(exp 10)s/cu cm, which establishes that this remnant is indeed young and in the ionizing phase of evolution of its X-ray spectrum. We determine the abundances of the elements O, Ne, Mg, Si, S, Ar, and Fe and examine their variation over the allowed range of column density, kT, and n(sub e)t. Numerical calculations of the nucleosynthesis expected for a 25 solar mass progenitor agree best with the fitted abundances; in fact the minimum rms percent difference between this model and the derived abundances is only 15%. From the fitted emission measure and a simple geometric model of the remnant we estimate the mass of X-ray-emitting plasma to be 9.3(sub -6.2)(sup +1.19) solar mass, for an assumed distance of 4.8 +/- 1.6 kpc. Additional errors on this mass estimate, from clumping of the ejecta, for example, may be substantial. No evidence was found for a difference in the thermodynamic state of the plasma as a function of elemental composition based on analysis of the individual ionization timescales of the various species. In this sense then, G292.0+1.8 resembles the remnant Cas A (another product of a massive star supernova), while it is different from the remnants of SN 1572 (Tycho) and SN 1006, both of which are believed to be from Type Ia supernovae.
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