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首页> 外文期刊>The Astrophysical journal >THE SUPERNOVA REMNANT CTB 104A: MAGNETIC FIELD STRUCTURE AND INTERACTION WITH THE ENVIRONMENT
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THE SUPERNOVA REMNANT CTB 104A: MAGNETIC FIELD STRUCTURE AND INTERACTION WITH THE ENVIRONMENT

机译:SUPERNOVA REMNANT CTB 104A:磁场结构及其与环境的相互作用

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摘要

We present new, high-resolution 1420 and 408 MHz continuum images and H Ⅰ and ~(12)CO (J = 1-0) spectral line maps of the diffuse supernova remnant (SNR) CTB 104A (G93.7-0.3). Analysis of the complex continuum emission reveals no significant spectral index variations across the remnant. Three prominences around CTB 104A are found to be related to the SNR, while one extension to the east is identified as an H Ⅱ region associated with a background molecular shell. Small-scale polarization and rotation measure (RM) structures are turbulent in nature, but we find a well-ordered RM gradient across the remnant, extending from southeast to northwest. This gradient does not agree with the direction of the global Galactic magnetic field but does agree with a large-scale RM anomaly inferred from RM data by Clegg et al. We show that the observed morphology of CTB 104A is consistent with expansion in a uniform magnetic field, and this is supported by the observed RM distribution. By modeling the RM gradient with a simple compression model we have determined the magnetic field strength within the remnant as B_0 ≈ 2.3 μG. We have identified signatures of the interaction of CTB 104A with the surrounding neutral material and determined its distance, from the kinematics of the H Ⅰ structure encompassing the radio emission, as 1.5 kpc. We also observed clear breaks in the H Ⅰ shell that correspond well to the positions of two of the prominences, indicating regions where hot gas is escaping from the interior of the SNR.
机译:我们提供了新的高分辨率1420和408 MHz连续谱图像,以及弥散超新星残差(SNR)CTB 104A(G93.7-0.3)的HⅠ和〜(12)CO(J = 1-0)谱线图。对复杂的连续谱发射的分析表明,残留物中没有明显的光谱指数变化。发现CTB 104A周围的三个突出与SNR有关,而向东的一个扩展被确定为与背景分子壳相关的HⅡ区。小规模的极化和旋转测量(RM)结构在本质上是湍流的,但是我们发现整个剩余部分有序的RM梯度,从东南向西北延伸。该梯度与整体银河磁场的方向不一致,但与Clegg等人从RM数据推断出的大规模RM异常一致。我们表明,观察到的CTB 104A的形态与均匀磁场中的膨胀相一致,这由观察到的RM分布所支持。通过使用简单的压缩模型对RM梯度进行建模,我们确定了残留物内的磁场强度为B_0≈2.3μG。我们已经确定了CTB 104A与周围中性物质相互作用的特征,并确定了它的距离(从包含无线电发射的HⅠ结构的运动学)为1.5 kpc。我们还观察到HⅠ壳中明显的破裂,与两个突出部分的位置非常吻合,表明热气体从SNR内部逸出。

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