论文标题

在Cassiopeia的东北喷气机A中发现稳定的钛a:需要弱喷气机构吗?

Discovery of Stable Titanium at the Northeastern Jet of Cassiopeia A: Need for a Weak Jet Mechanism?

论文作者

Ikeda, Takuma, Uchiyama, Yasunobu, Sato, Toshiki, Higurashi, Ryota, Tsuchioka, Tomoya, Yamada, Shinya

论文摘要

尽管它似乎与其爆炸机制有关,但在Cassiopeia a中观察到的类似喷气状结构的起源仍不清楚。对特征结构的X射线观察可以通过观察元素为我们提供有关爆炸性核合成的有用信息,这是一种理解其起源的独特方法。我们在这里报告了震惊的稳定Ti的发现,该稳定Ti仅在Cassiopeia a的东北射流中仅在爆炸恒星的内部区域生产,并使用Chandra X射线观测天文台的1-MS深观测。观察到的TI与X射线射流结构尖端的其他中间质量元素(例如Si,S,AR,CA)和Fe共存。我们发现,不完整的Si燃烧制度对生产进行了很好的解释,这表明喷气结构的形成过程在爆炸时是亚源性的(核燃烧期间的峰值温度必须为$ \ Lessim $ 5 $ \ tims $ 5 $ \ times $ 10 $^{9} $ k)。因此,我们得出的结论是,形成喷射结构的能源不是超新星爆炸的主要发动机。我们的结果对于限制喷射结构形成过程的功率很有用,可能需要使用低温的弱喷气机制来解释它。

The origin of the jet-like structures observed in Cassiopeia A is still unclear, although it seems to be related to its explosion mechanism. X-ray observations of the characteristic structures could provide us useful information on the explosive nucleosynthesis via the observation of elements, which is a unique approach to understand its origin. We here report the discovery of shocked stable Ti, which is produced only at the inner region of exploding stars, in the northeast jet of Cassiopeia A using the 1-Ms deep observation with the Chandra X-ray observatory. The observed Ti coexists with other intermediate-mass elements (e.g. Si, S, Ar, Ca) and Fe at the tip of the X-ray jet structure. We found that its elemental composition is well explained with the production by the incomplete Si burning regime, indicating that the formation process of the jet structure was sub-energetic at the explosion (the peak temperature during the nuclear burning must be $\lesssim$ 5$\times$10$^{9}$ K at most). Thus, we conclude that the energy source that formed the jet structure was not the primary engine for the supernova explosion. Our results are useful to limit the power of the jet-structure formation process, and a weak jet mechanism with low temperature may be needed to explain it.

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