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Spatially resolved spectroscopy of non-thermal X-rays in RX J1713.7-3946 with Chandra

机译:用Chandra在RX J1713.7-3946中空间解决的非热X射线光谱学

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摘要

The young shell-type supernova remnant (SNR) RX J1713.7-3946 has been studied as a suitable target to test the SNR paradigm for the origin of Galactic cosmic rays. We present a spatially resolved spectroscopy of the non-thermal X-ray emission in RX J1713.7-3946 with Chandra. In order to obtain X- ray properties of the filamentary structures and their surrounding regions, we divide the southeastern (SE), southwestern (SW), and northwestern (NW) parts of the SNR into subregions on the typical order of several 10 '' and extract spectra from each subregion. Their photon indices are significantly different among the subregions, with a range of 1.8 < Gamma < 3. In the SE part, the clear filaments are harder (Gamma similar to 2.0) than the surrounding regions. This is a common feature often observed in young SNRs and naturally interpreted as a consequence of synchrotron cooling. On the other hand, the bright filamentary regions do not necessarily coincide with the hardest regions in the SW and NW parts. We also find the SW filamentary region is relatively rather soft (Gamma similar to 2.7). In addition, we find that hard regions with photon indices of 2.0-2.2 exist around the bright emission although the hard regions lie in the downstream region and the bright emission does not appear to be the blast wave shock front. Both the aforementioned characteristic regions in SW are located close to peaks of the interstellar gas. We discuss possible origins of the spatial variation of the photon indices, paying particular attention to the shock-cloud interactions.
机译:已经研究了年轻的壳牌超新星残余(SNR)RX J171313.7-3946作为测试银河宇宙射线起源的SNR范例的适当目标。我们在RX J1713.7-3946中提出了一种空间分辨的光谱,用Chandra。为了获得丝状结构及其周围地区的X射线特性,我们将东南(SE),西南(SW)和西北(NW)部分分为几个10''的典型顺序的次区域并从每个子区域提取光谱。它们的光子索引在亚区之间具有显着差异,范围为1.8 <γ<3.在SE部分中,透明长丝比周围区域更难以(伽马类似到2.0)。这是在年轻的SNR中经常观察到的常见特征,并且由于同步冷却而自然地解释。另一方面,明亮的丝状区域并不一定与SW和NW部件中最硬的区域重合。我们还发现SW丝状区域比较柔软(伽玛相似至2.7)。此外,我们发现虽然硬区域位于下游区域,但仍然存在于亮的区域,并且亮度发射似乎似乎不会成为爆炸波震动前方的耐火震动前部的光子指数存在2.0-2.2的光子指数。 SW中的上述特征区域均靠近星际气体的峰。我们讨论了光子指数的空间变化的可能起源,特别注意了冲击云相互作用。

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