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XMM-Newton observation of the supernova remnant Kes 78 (G32.8-0.1): Evidence of shock-cloud interaction

机译:XMM-牛顿观测到的超新星残余Kes 78(G32.8-0.1):冲击云相互作用的证据

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Context. The Galactic supernova remnant Kes 78 is surrounded by dense molecular clouds, whose projected position overlaps with the extended HESS γ -ray source HESS J1852-000. The X-ray emission from the remnant has recently been revealed by Suzaku observations, which have shown indications for a hard X-ray component in the spectra that might be associated with synchrotron radiation. Aims. We describe the spatial distribution of the physical properties of the X-ray emitting plasma and reveal the effects of the interaction of the remnant with the inhomogeneous ambient medium. We also investigate the origin of the γ -ray emission, which may be inverse-Compton radiation associated with X-ray synchrotron-emitting electrons or hadronic emission originating from the impact of high-energy protons on the nearby clouds. Methods. We analyzed an XMM-Newton EPIC observation of Kes 78 by performing image analysis and spatially resolved spectral analysis on a set of three regions. We tested our findings against the observations of the ~(12) CO and ~(13) CO emission in the environment of the remnant. Results. We reveal the complex X-ray morphology of Kes 78 and find variations in the spectral properties of the plasma, with significantly denser and cooler material at the eastern edge of the remnant, which we interpret as a signature of interaction with a molecular cloud. We also exclude that narrow filaments emit the X-ray synchrotron radiation. Conclusions. Assuming that the very high energy γ -ray emission is associated with Kes 78, the lack of synchrotron emission rules out a leptonic origin. A hadronic origin is further supported by evidence of interaction of the remnant with a dense molecular cloud in its eastern limb.
机译:上下文。银河系超新星残余Kes 78被密集的分子云包围,其投射位置与扩展的HESSγ射线源HESS J1852-000重叠。 Suzaku观测最近揭示了残余物的X射线发射,这些观测表明光谱中可能存在与同步加速器辐射有关的硬X射线成分。目的我们描述了发射X射线等离子体的物理特性的空间分布,并揭示了残余物与不均匀环境介质相互作用的影响。我们还研究了γ射线发射的起源,它可能是与X射线同步加速器发射的电子相关的逆康普顿辐射,也可能是由于高能质子对附近云层的影响而产生的强子发射。方法。我们通过对一组三个区域执行图像分析和空间分辨光谱分析,分析了Kes 78的XMM-Newton EPIC观测结果。我们针对残留环境中〜(12)CO和〜(13)CO排放的观察结果检验了我们的发现。结果。我们揭示了Kes 78的复杂X射线形态,并发现了等离子体光谱特性的变化,在残余物的东边缘有明显更致冷的物质,我们将其解释为与分子云相互作用的标志。我们还排除了细丝发出X射线同步加速器辐射的情况。结论。假设非常高的能量γ射线发射与Kes 78有关,则缺乏同步加速器发射排除了轻子起源。重金属的起源进一步得到了残余物与其东部肢体中密集的分子云相互作用的证据的支持。

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