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ENVIRONMENTAL IMPACT ON THE SOUTHEAST LIMB OF THE CYGNUS LOOP

机译:对天鹅座环东南缘的环境影响

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摘要

We analyze Chandra observations of the southeast knot of the Cygnus Loop supernova remnant. In this region, the blast wave propagates through an inhomogeneous environment. Extrinsic differences and subsequent multiple projections along the line of sight rather than intrinsic shock variations such as fluid instabilities, account for the apparent complexity of the images. Interactions between the supernova blast wave and density enhancements of a large interstellar cloud can produce the morphological and spectral characteristics. Most of the X-ray flux arises in such interactions, not in the diffuse interior of the supernova remnant. Additional observations at optical and radio wavelengths support this account of the existing interstellar medium and its role in shaping the Cygnus Loop, and they demonstrate that the southeast knot is not a small cloud that the blast wave has engulfed. These data are consistent with rapid equilibration of electron and ion temperatures behind the shock front, and the current blast wave velocity v_(bw) ≈ 330 km s~(-1). Most of this area does not show strong evidence for nonequilibrium ionization conditions, which may be a consequence of the high densities of the bright emission regions.
机译:我们分析了钱德拉对天鹅座环超新星残骸东南结的观测。在该区域,爆炸波传播通过不均匀的环境。沿视线的外部差异和随后的多个投影,而不是固有的震动变化(例如流体不稳定性),说明了图像的表观复杂性。超新星爆炸波与大型星际云的密度增强之间的相互作用可以产生形态和光谱特征。大多数X射线通量是在这种相互作用中产生的,而不是在超新星残余物的扩散内部产生的。在光学和无线电波长上的其他观测结果支持了对现有星际介质及其在塑造天鹅座环中的作用的解释,它们证明了东南结不是爆炸波吞没的小云。这些数据与激波前沿后面的电子和离子温度的快速平衡以及当前的爆炸波速度v_(bw)≈330 km s〜(-1)相一致。该区域的大部分区域没有显示出非平衡电离条件的有力证据,这可能是亮发射区的高密度造成的。

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