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首页> 外文期刊>The Astrophysical journal >Revealing New Physical Structures in the Supernova Remnant N63A through Chandra Imaging Spectroscopy
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Revealing New Physical Structures in the Supernova Remnant N63A through Chandra Imaging Spectroscopy

机译:通过钱德拉成像光谱揭示超新星残留物N63A中的新物理结构

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摘要

We present Chandra X-ray observations of the supernova remnant (SNR) N63A in the Large Magellanic Cloud (LMC). N63A, one of the brightest LMC remnants, is embedded in an H II region and is probably associated with an OB association. The optical remnant consists of three lobes of emission contained within the approximately 3 times larger X-ray remnant. Our Chandra data reveal a number of new physical structures in N63A. The most striking of these are the several "crescent"-shaped structures located beyond the main shell that resemble similar features seen in the Vela SNR. In Vela, these have been interpreted as arising from high-speed clumps of supernova ejecta interacting with the ambient medium. Another distinct feature of the remnant is a roughly triangular "hole" in the X-ray emission near the location of the optical lobes and the brightest radio emission. X-ray spectral analysis shows that this deficit of emission is the result of absorption by an intervening dense cloud with a mass of ~450 M☉ that is currently being engulfed by the remnant's blast wave. We also find that the rim of the remnant, as well as the crescent-shaped features, has considerably softer X-ray spectra than the interior. Limits on hard X-ray emission rule out a young, energetic pulsar in N63A, but the presence of an older or less active one, powering a wind nebula with a luminosity less than ~4 × 1034 ergs s-1, is allowed.
机译:我们介绍了大麦哲伦星云(LMC)中超新星遗迹(SNR)N63A的钱德拉X射线观察。 N63A是最亮的LMC残余物之一,嵌入H II区,可能与OB关联有关。光学残余物包含三个发射波瓣,包含在大约3倍大的X射线残余物中。我们的Chandra数据揭示了N63A中的许多新物理结构。其中最引人注目的是位于主机壳之外的几个“新月形”结构,类似于在Vela SNR中看到的相似特征。在Vela中,这些被解释为是由超新星喷射的高速团块与周围介质相互作用而引起的。残留物的另一个显着特征是X射线发射中靠近光瓣位置和最亮的无线电发射的三角形“洞”。 X射线光谱分析表明,这种发射不足是中间质量约450M☉的中间浓云吸收吸收的结果,该浓云目前被残余的爆炸波吞没。我们还发现,残留物的边缘以及新月形的特征比内部的X射线光谱要软得多。硬X射线发射的限制排除了N63A中年轻的高能脉冲星,但是允许存在年龄较大或活跃程度较低的脉冲星,该粒子为光度小于约4×1034 ers s-1的风星云提供动力。

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