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X-ray emission from the nuclei, lobes and hot-gas environments of two FR-II radio galaxies

机译:来自两个FR-II射电星系的原子核,波瓣和热气环境的X射线发射

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摘要

We report the detection of multiple components of X-ray emission from the two FR-II radio galaxies 3C 223 and 3C 284, based on new XMM-Newton observations. We attribute the detected X-ray emission from the lobes of both sources to inverse-Compton scattering of cosmic microwave background photons. With this model, we find that the magnetic field strength in the lobes is at the equipartition value for 3C 284, and within a factor of two of the equipartition value for 3C 223. We also detect group-scale hot atmospheres around both sources, and determine temperatures and pressures in the gas. The lobes of both sources are in pressure balance with the hot-gas environments, if the lobes contain only the synchrotron-emitting particles and the measured magnetic field strength. The core spectra of both sources contain an unabsorbed soft component, likely to be related to the radio jet, and an additional heavily absorbed power-law component. 3C 223 also displays a bright (EW ~ 500 eV) Fe K-alpha emission line.
机译:我们报告了根据新的XMM-牛顿观测值,从两个FR-II射电星系3C 223和3C 284检测到X射线发射的多个分量。我们将两个源的波瓣检测到的X射线辐射归因于宇宙微波背景光子的逆康普顿散射。通过此模型,我们发现叶片的磁场强度在3C 284的等分值处,并且在3C 223的等分值的二分之一以内。我们还检测了两个源周围的群尺度热大气,并且确定气体中的温度和压力。如果波瓣仅包含发射同步加速器的粒子和测得的磁场强度,则两个波瓣的波瓣与热气环境压力平衡。这两个源的核心光谱都包含未吸收的软组分(可能与无线电射流有关),以及另外一个被大量吸收的幂律组分。 3C 223还显示一条明亮的(EW〜500 eV)Fe K-alpha发射线。

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