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Feature-tailored spectroscopic analysis of the supernova remnant Puppis A in X-rays

机译:X射线中超新星残留的小山羊座A的特征定制光谱分析

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摘要

We introduce a distinct method for performing spatially resolved spectral analysis of astronomical sources with highly structured X-ray emission. The method measures the surface brightness of neighboring pixels to adaptively size and shape each region, thus the spectra from the bright and faint filamentary structures evident in the broadband images can be extracted. As a test case, we present the spectral analysis of the complete X-ray emitting plasma in the supernova remnant Puppis A observed with XMM-Newton and Chandra . Given the angular size of Puppis A, many pointings with different observational configurations have to be combined, presenting a challenge to any method of spatially resolved spectroscopy. From the fit of a plane-parallel shocked plasma model we find that temperature, absorption column, ionization time scale, emission measure, and elemental abundances of O, Ne, Mg, Si, S, and Fe, are smoothly distributed in the remnant. Some regions with overabundances of O, Ne, and Mg previously characterized as ejecta material, were automatically selected by our method, proving the excellent response of the technique. This method is an advantageous tool for the exploitation of archival X-ray data.
机译:我们介绍一种独特的方法,用于对具有高度结构化X射线发射的天文源进行空间分辨光谱分析。该方法测量相邻像素的表面亮度,以自适应地调整每个区域的大小和形状,从而可以提取宽带图像中明显的淡淡丝状结构的光谱。作为测试案例,我们介绍了用XMM-Newton和Chandra观测到的超新星残骸Puppis A中完整的X射线发射等离子体的光谱分析。给定Puppis A的角度大小,必须将具有不同观察配置的许多指向组合起来,这对任何空间分辨光谱方法都提出了挑战。从平面平行冲击等离子体模型的拟合中,我们发现残留物中的O,Ne,Mg,Si,S和Fe的温度,吸收柱,电离时间标度,发射度量和元素丰度均平滑分布。我们的方法自动选择了以前表征为喷射物质的O,Ne和Mg过剩的一些区域,证明了该技术的出色响应。该方法是利用档案X射线数据的有利工具。

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