论文标题

核心崩溃超新星爆炸理论

Core-Collapse Supernova Explosion Theory

论文作者

Burrows, Adam, Vartanyan, David

论文摘要

大多数超新星爆炸都伴随着一颗巨大的恒星死亡。这些爆炸产生了中子星,黑洞和弹出的沉重元素。但是,确定爆炸的机制是半个世纪的复杂之旅。在本文中,我们介绍了这种理论追求的地位以及其分辨率似乎取决于的物理学和天体物理学的看法。延迟的中微子加热机制正在成为一种强大的解决方案,但仍有许多问题要解决,其中最重要的是涉及动态的混乱,然后才能明确宣布胜利。不可能详细审查这个多方面的,超过半世纪的理论追求的所有方面。相反,我们在这里绘制出爆炸的主要成分以及具有祖细胞质量的可观察物的新兴系统,正如我们目前看到的那样。我们的讨论将在某些地方进行投机,许多想法可能无法在未来的审查中幸存下来。一些陈述可能被视为有关众多可观察到的天文学家见证和诊断超新星宇宙的知情预测。重要的是,根据爆炸时恒星的质量和半径,在相同的机制中,内部的爆炸看起来非常不同。一个10 $^{51} $ - erg(一个“伯特”)爆炸的红色超级巨人,具有巨大的氢络合物,减少的氢信封,没有氢信封,也许没有氢信封或氦壳,但看起来都非常不同,但可能具有相同的核心和爆炸和爆炸的进化。

Most supernova explosions accompany the death of a massive star. These explosions give birth to neutron stars and black holes and eject solar masses of heavy elements. However, determining the mechanism of explosion has been a half-century journey of great complexity. In this paper, we present our perspective of the status of this theoretical quest and the physics and astrophysics upon which its resolution seems to depend. The delayed neutrino-heating mechanism is emerging as a robust solution, but there remain many issues to address, not the least of which involves the chaos of the dynamics, before victory can unambiguously be declared. It is impossible to review in detail all aspects of this multi-faceted, more-than-half-century-long theoretical quest. Rather, we here map out the major ingredients of explosion and the emerging systematics of the observables with progenitor mass, as we currently see them. Our discussion will of necessity be speculative in parts, and many of the ideas may not survive future scrutiny. Some statements may be viewed as informed predictions concerning the numerous observables that rightly exercise astronomers witnessing and diagnosing the supernova Universe. Importantly, the same explosion in the inside, by the same mechanism, can look very different in photons, depending upon the mass and radius of the star upon explosion. A 10$^{51}$-erg (one "Bethe") explosion of a red supergiant with a massive hydrogen-rich envelope, a diminished hydrogen envelope, no hydrogen envelope, and, perhaps, no hydrogen envelope or helium shell all look very different, yet might have the same core and explosion evolution.

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