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红超巨星周围由光电离限制壳相互作用的超新星。

Interacting supernovae from photoionization-confined shells around red supergiant stars.

机构信息

Argelander-Institut für Astronomie, Auf dem Hügel 71, 53121 Bonn, Germany.

South African Astronomical Observatory, PO Box 9, 7935 Observatory, South Africa.

出版信息

Nature. 2014 Aug 21;512(7514):282-5. doi: 10.1038/nature13522. Epub 2014 Aug 10.

Abstract

Betelgeuse, a nearby red supergiant, is a fast-moving star with a powerful stellar wind that drives a bow shock into its surroundings. This picture has been challenged by the discovery of a dense and almost static shell that is three times closer to the star than the bow shock and has been decelerated by some external force. The two physically distinct structures cannot both be formed by the hydrodynamic interaction of the wind with the interstellar medium. Here we report that a model in which Betelgeuse's wind is photoionized by radiation from external sources can explain the static shell without requiring a new understanding of the bow shock. Pressure from the photoionized wind generates a standing shock in the neutral part of the wind and forms an almost static, photoionization-confined shell. Other red supergiants should have much more massive shells than Betelgeuse, because the photoionization-confined shell traps up to 35 per cent of all mass lost during the red supergiant phase, confining this gas close to the star until it explodes. After the supernova explosion, massive shells dramatically affect the supernova light curve, providing a natural explanation for the many supernovae that have signatures of circumstellar interaction.

摘要

参宿四是一颗附近的红超巨星,它是一颗快速移动的恒星,其强大的恒星风在其周围产生了弓形激波。然而,这一观点受到了一个密集且几乎静态的壳层的发现的挑战,这个壳层比弓形激波更接近恒星,并且被某种外部力量减速。这两个物理上截然不同的结构不可能都是由恒星风与星际介质的流体相互作用形成的。在这里,我们报告了一个模型,其中参宿四的风是由外部辐射光致电离的,这个模型可以解释静态壳层,而不需要对弓形激波有新的理解。光致电离风的压力在风的中性部分产生了一个驻波,并形成了一个几乎静态的、光致电离限制的壳层。其他红超巨星应该有比参宿四更大质量的壳层,因为光致电离限制的壳层可以捕获红超巨星阶段损失的所有质量的 35%,将这些气体限制在恒星附近,直到它爆炸。在超新星爆炸后,大量的壳层会显著影响超新星的光曲线,为许多具有星际相互作用特征的超新星提供了自然的解释。

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