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SPECTRAL MODELING OF THE CHARGE-EXCHANGE X-RAY EMISSION FROM M82

机译:M82的电荷交换X射线发射的光谱模型

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It has been proposed that the charge-exchange (CX) process at the interface between hot and cool interstellar gases could contribute significantly to the observed soft X-ray emission in star-forming galaxies. We analyze the XMM-Newton/reflection grating spectrometer (RGS) spectrum of M82 using a newly developed CX model combined with a single-temperature thermal plasma to characterize the volume-filling hot gas. The CX process is largely responsible for not only the strongly enhanced forbidden lines of the Kα triplets of various He-like ions but also good fractions of the Lyα transitions of C VI (~87%), O VIII, and N VII (50%) as well. In total about a quarter of the X-ray flux in the RGS 6-30 ? band originates in the CX. We infer an ion incident rate of 3 × 1051 s–1 undergoing CX at the hot and cool gas interface and an effective area of the interface of ~2 × 1045 cm2 that is one order of magnitude larger than the cross section of the global biconic outflow. With the CX contribution accounted for, the best-fit temperature of the hot gas is 0.6?keV, and the metal abundances are approximately solar. We further show that the same CX/thermal plasma model also gives an excellent description of the EPIC-pn spectrum of the outflow Cap, projected at 11.6?kpc away from the galactic disk of M82. This analysis demonstrates that the CX is potentially an important contributor to the X-ray emission from starburst galaxies and also an invaluable tool to probe the interface astrophysics.
机译:已经提出,在冷热星际气体之间的界面处的电荷交换(CX)过程可能对形成恒星的星系中观测到的软X射线发射有显着贡献。我们使用新开发的CX模型与单温度热等离子体相结合来分析M82的XMM-牛顿/反射光栅光谱仪(RGS)光谱,以表征填充热气的体积。 CX过程不仅在很大程度上导致了各种He样离子的Kα三重态的禁忌线的强烈增强,而且还导致了C VI(〜87%),O VIII和N VII(50% )。在RGS 6-30中,总共约占X射线通量的四分之一?乐队起源于CX。我们推断,在热气和冷气界面处经历CX的离子入射速率为3×1051 s-1,该界面的有效面积为〜2×1045 cm2,比整体双曲面的横截面大一个数量级。外流。考虑到CX的贡献,热气的最合适温度为0.6?keV,金属丰度约为太阳能。我们进一步表明,相同的CX /热等离子体模型还给出了流出盖的EPIC-pn光谱的出色描述,投影图的投影距离M82的银河盘11.6kkpc。该分析表明,CX可能是星爆星系X射线发射的重要贡献者,并且是探测界面天体物理学的宝贵工具。

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