论文标题

通过其辐射重组连续体揭示超新星残留物中纯金属射线X射线发射

Unveiling pure-metal ejecta X-ray emission in supernova remnants through their radiative recombination continuum

论文作者

Greco, Emanuele, Vink, Jacco, Miceli, Marco, Orlando, Salvatore, Domcek, Vladimir, Zhou, Ping, Bocchino, Fabrizio, Peres, Giovanni

论文摘要

CCD摄像机的低光谱分辨率阻碍了超新星残留物(SNR)中射流发射的频谱分析,这在最佳拟合度值和排放量值之间产生了堕落。冲击的环境培养基和弹射对X射线发射的综合贡献使射流质量和化学组成的确定变得复杂,从而导致质量估计的极大不确定性,并且在观察到的射流组合物与爆炸性核合体预测的产量之间的比较时可能会引入偏差。我们探讨了当前和未来光谱仪器的功能,目的是识别光谱特征,这可能使我们能够区分SNR的X射线光谱中的金属富含金属和纯金属等离子体。我们研究了高丰富度方案中光学薄等离子体最常见的X射线发射过程的行为。我们通过探索广泛的化学丰度,温度和电离参数研究了Bremsstrahlung,辐射重组连续(RRC)和线发射的光谱特征。我们通过使用Chandra/acis-S CCD检测器的响应矩阵以及XRISM/RESOVEL/RESOLVE X射线热量表的响应矩阵,从3D流体动力(HD)模拟CAS的3D流体动力(HD)模拟合成X射线光谱。我们发现,当血浆由纯正弹射器制成时,出现了明亮的RRC,并且需要高光谱分辨率来识别此射出的特征。我们验证了新型诊断工具的适用性,并提出了一个有希望的目标,用于未来检测这种光谱特征:富含Fe的CAS A的富含Fe的团块A,虽然无法明确地揭示与CCD探测器的纯属喷射发射,但X射线calorimeter将能够确定纯度质量和恢复纯度和恢复的质量的确定,并确定了正确的质量和恢复的化学量。

Spectral analysis of X-ray emission from ejecta in supernova remnants (SNRs) is hampered by the low spectral resolution of CCD cameras, which creates a degeneracy between the best-fit values of abundances and emission measure. The combined contribution of shocked ambient medium and ejecta to the X-ray emission complicates the determination of the ejecta mass and chemical composition, leading to big uncertainties in mass estimates and it can introduce a bias in the comparison between the observed ejecta composition and the yields predicted by explosive nucleosynthesis. We explore the capabilities of present and future spectral instruments with the aim of identifying a spectral feature which may allow us to discriminate between metal-rich and pure-metal plasmas in X-ray spectra of SNRs. We studied the behavior of the most common X-ray emission processes of an optically thin plasma in the high-abundance regime. We investigated spectral features of bremsstrahlung, radiative recombination continua (RRC) and line emission, by exploring a wide range of chemical abundances, temperatures and ionization parameters. We synthesized X-ray spectra from a 3D hydrodynamic (HD) simulation of Cas A, by using the response matrix from the Chandra/ACIS-S CCD detector and that of the XRISM/Resolve X-ray calorimeter. We found that a bright RRC shows up when the plasma is made of pure-metal ejecta, and a high spectral resolution is needed to identify this ejecta signature. We verified the applicability of our novel diagnostic tool and we propose a promising target for the future detection of such spectral feature: the southeastern Fe-rich clump of Cas A. While there is no way to unambiguously reveal pure-metal ejecta emission with CCD detectors, X-ray calorimeters will be able to pinpoint the presence of pure-metal RRC and to recover correctly absolute mass and the chemical composition of the ejecta.

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