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首页> 外文期刊>Astronomy and astrophysics >No surviving non-compact stellar companion to Cassiopeia A
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No surviving non-compact stellar companion to Cassiopeia A

机译:没有仙后座A尚存的非紧凑型恒星伴侣

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摘要

Massive stars in binaries can give rise to extreme phenomena such as X-ray binaries and gravitational wave sources after one or both stars end their lives as core-collapse supernovae. Stars in close orbit around a stellar or compact companion are expected to explode as “stripped-envelope supernovae”, showing no (Type Ib/c) or little (Type IIb) signs of hydrogen in the spectra, because hydrogen-rich progenitors are too large to fit. The physical processes responsible for the stripping process and the fate of the companion are still very poorly understood. Aiming to find new clues, we investigate Cas A, which is a very young (~340 yr) and near (~3.4 kpc) remnant of a core-collapse supernova. Cas A has been subject to several searches for possible companions, all unsuccessfully. We present new measurements of the proper motions and photometry of stars in the vicinity based on deep HST ACS/WFC and WFC3-IR data. We identify stellar sources that are close enough in projection but using their proper motions we show that none are compatible with being at the location of center at the time of explosion, in agreement with earlier findings. Our photometric measurements allow us to place much deeper (order-of-magnitude) upper limits on the brightness of possible undetected companions. We systematically compare them with model predictions for a wide variety of scenarios. We can confidently rule out the presence of any stellar companion of any reasonable mass and age (main sequence, pre main sequence or stripped) ruling out what many considered to be likely evolutionary scenarios for Type IIb supernova (SN IIb). More exotic scenarios that predict the presence of a compact companion (white dwarf, neutron star or black hole) are still possible as well as scenarios where the progenitor of Cas A was single at the moment of explosion (either because it was truly single, or resulted from a binary that was disrupted, or from a binary merger). The presence of a compact companion would imply that Cas A is of interest to study exotic outcomes of binary evolution. The single-at-death solution would still require fine-tuning of the process that removed most of the envelope through a mass-loss mechanism yet to be identified. We discuss how future constraints from Gaia and even deeper photometric studies may help to place further constraints.
机译:在一个或两个恒星作为核心坍塌的超新星终止生命之后,双星中的大量恒星会引起诸如X射线双星和引力波源之类的极端现象。围绕恒星或紧密伴星的近轨道恒星预计会爆炸成“剥离包层超新星”,在光谱中显示没有(Ib / c型)或几乎没有(IIb型)氢迹象,因为富含氢的祖先也是如此大到适合。负责剥离过程和伴侣命运的物理过程仍知之甚少。为了找到新的线索,我们研究了Cas A,它是一个非常年轻(〜340年)并且接近(〜3.4 kpc)的核塌陷超新星遗迹。 Cas A已多次搜索可能的同伴,但均未成功。我们根据深的HST ACS / WFC和WFC3-IR数据,对附近恒星的适当运动和光度学进行了新的测量。我们确定了在投影中足够接近的恒星源,但是使用它们的适当运动,我们证明了与爆炸时位于中心位置的恒星源不相容,这与先前的发现是一致的。通过光度测量,我们可以对可能未被检测到的同伴的亮度设置更深的(数量级)上限。我们将它们与针对各种场景的模型预测进行系统地比较。我们可以自信地排除任何具有适当质量和年龄(主要序列,主要序列前或剥离序列)的恒星伴星的存在,排除了许多被认为是IIb型超新星(SN IIb)可能演化的场景。仍然可以预测出紧密伴星(白矮星,中子星或黑洞)的存在的更奇特的场景,以及在爆炸时Cas A的祖先是单个的场景(要么是因为它确实是单个,要么是是由于二进制文件被破坏或二进制合并引起的)。紧密伴侣的存在暗示着Cas A对于研究二元进化的奇异结果很感兴趣。一次死亡的解决方案仍然需要对过程进行微调,以通过尚未发现的质量损失机制来去除大部分包膜。我们将讨论来自盖亚(Gaia)的未来限制以及更深入的光度学研究如何有助于进一步限制。

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