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SUPERNOVA REMNANTS IN THE MAGELLANIC CLOUDS. Ⅰ. THE COLLIDING REMNANTS DEM L316

机译:麦哲伦云中的超新星遗迹。 Ⅰ。褶皱残留DEM L316

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The Large Magellanic Cloud (LMC) supernova remnant (SNR) DEM L316 is of considerable interest, as it shows two overlapping shells at radio and optical wavelengths. This morphology suggests that DEM L316 is in fact two SNRs, which may or may not be spatially connected. We have observed the DEM L316 remnants at optical, radio, and X-ray wavelengths in order to address the question of whether the SNRs are interacting, and if so, whether a tunnel might have formed between the remnants, allowing them to equilibrate. Besides the connecting shell morphologies at optical and radio wavelengths, our observations show enhanced [O III] emission at the juncture between the shells, enhanced X-ray emission from one shell at that juncture, and a change in the structure of the magnetic field near the interaction region. These factors strongly imply that the two remnants are indeed colliding. In addition, we have done a detailed study on the physical properties of the remnants, including an examination of thermal and kinetic energies and of the balance of thermal and magnetic pressures.
机译:大麦哲伦星云(LMC)超新星遗迹(SNR)DEM L316引起了极大的兴趣,因为它显示了两个在无线电和光学波长下重叠的壳。这种形态表明,DEM L316实际上是两个SNR,它们在空间上可能会或可能不会相连。我们已经在光,无线电和X射线波长处观察了DEM L316残留物,以便解决SNR是否相互作用以及是否在残留物之间形成隧道的问题,从而使它们平衡。除了在光波长和射电波长处的连接壳形态外,我们的观察结果还表明,在壳之间的接合处发射的[O III]发射增强,在该接合处从一个壳发射的X射线发射增强,并且附近的磁场结构发生了变化互动区域。这些因素强烈暗示着这两个残留物确实在碰撞。此外,我们对残留物的物理性质进行了详细研究,包括检查热能和动能以及热压和磁压的平衡。

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