Supernova 1987A’s Keyhole: A Long-lived Jet-pair in the Final Explosion Phase of Core-collapse Supernovae

IF 1.8 4区 物理与天体物理 Q3 ASTRONOMY & ASTROPHYSICS Research in Astronomy and Astrophysics Pub Date : 2024-06-26 DOI:10.1088/1674-4527/ad4fc2
Noam Soker
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Abstract

I further study the manner by which a pair of opposite jets shape the “keyhole” morphological structure of the core-collapse supernova (CCSN) SN 1997A, now the CCSN remnant (CCSNR) 1987A. By doing so, I strengthen the claim that the jittering-jet explosion mechanism accounts for most, likely all, CCSNe. The “keyhole” structure comprises a northern low-intensity zone closed with a bright rim on its front and an elongated low-intensity nozzle in the south. This rim-nozzle asymmetry is observed in some cooling flow clusters and planetary nebulae that are observed to be shaped by jets. I build a toy model that uses the planar jittering jets pattern, where consecutive pairs of jets tend to jitter in a common plane, implying that the accreted gas onto the newly born neutron star at the late explosion phase flows perpendicular to that plane. This allows for a long-lived jet-launching episode. This long-lasting jet-launching episode launches more mass into the jets that can inflate larger pairs of ears or bubbles, forming the main jets’ axis of the CCSNR that is not necessarily related to a possible pre-collapse core rotation. I discuss the relation of the main jets’ axis to the neutron star’s natal kick velocity.
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超新星1987A的钥匙孔:核心坍缩超新星最后爆发阶段的长寿命喷流对
我进一步研究了一对相反的喷流是如何形成核坍缩超新星(CCSN)SN 1997A(即现在的核坍缩超新星残余物(CCSNR)1987A)的 "钥匙孔 "形态结构的。通过这样做,我加强了关于抖动喷射爆炸机制可以解释大多数(可能是所有)CCSNe的说法。锁孔 "结构由一个北部低强度区和一个南部拉长的低强度喷口组成,北部低强度区的前部有一个明亮的边缘。在一些冷流星团和行星状星云中也观测到了这种边缘-喷口不对称的现象,它们被观测到是由喷流形成的。我建立了一个使用平面抖动喷流模式的玩具模型,在这个模型中,连续成对的喷流趋向于在一个共同的平面上抖动,这意味着在爆炸后期新诞生的中子星上的气体吸积流垂直于这个平面。这就使得喷流发射过程持续时间很长。这种持久的喷流发射过程会将更多的质量释放到喷流中,使更大的对耳或气泡膨胀,形成中子星的主喷流轴,而这与坍缩前可能发生的核心旋转没有必然联系。我将讨论主喷流轴与中子星原初踢速的关系。
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来源期刊
Research in Astronomy and Astrophysics
Research in Astronomy and Astrophysics 地学天文-天文与天体物理
CiteScore
3.20
自引率
16.70%
发文量
2599
审稿时长
6.0 months
期刊介绍: Research in Astronomy and Astrophysics (RAA) is an international journal publishing original research papers and reviews across all branches of astronomy and astrophysics, with a particular interest in the following topics: -large-scale structure of universe formation and evolution of galaxies- high-energy and cataclysmic processes in astrophysics- formation and evolution of stars- astrogeodynamics- solar magnetic activity and heliogeospace environments- dynamics of celestial bodies in the solar system and artificial bodies- space observation and exploration- new astronomical techniques and methods
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