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The massive binary companion star to the progenitor of supernova 1993J

机译:超新星1993J的祖先的巨大双星伴星

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摘要

The massive star which underwent core-collapse to produce SN1993J was identified as a non-variable red supergiant star in images of the galaxy M81 taken before explosion. However the stellar source showed an excess in UV and B-band colours that suggested it had either a hot, massive companion star or was embedded in an unresolved young stellar association. The spectra of SN1993J underwent a remarkable transformation between a hydrogen-rich Type II supernova and a helium-rich (hydrogen-deficient) Type Ib. The spectral and photometric peculiarities were explained by models in which the 13-20 solar mass supergiant had lost almost its entire hydrogen envelope to a close binary companion. The binary scenario is currently the best fitting model for the production of such type IIb supernovae, however the hypothetical massive companion stars have so far eluded discovery. Here we report the results of new photometric and spectroscopic observations of SN1993J, 10 years after explosion. At the position of the fading SN we detect the unambiguous signature of a massive star, the binary companion to the progenitor. This is evidence that this type of SN originate in interacting binary systems.
机译:在爆炸前拍摄的星系M81的图像中,经历了核塌陷以生成SN1993J的大质量恒星被确定为不变红色超巨星。然而,该恒星源显示出过多的紫外线和B波段颜色,这表明它要么具有炽热的大质量伴星,要么被嵌入未解决的年轻恒星协会中。 SN1993J的光谱在富氢的II型超新星和富氦的(缺氢的)Ib型之间进行了显着转换。光谱和光度学特性由模型解释,在模型中13-20太阳质量超级巨星几乎失去了整个氢包壳,变成了紧密的二元伴侣。目前,双星场景是生产此类IIb型超新星的最佳拟合模型,但是迄今为止,尚未发现假设的巨大伴星。在这里,我们报告爆炸10年后SN1993J的新的光度学和光谱学观察结果。在衰落的SN位置,我们检测到了一颗巨大恒星的清晰特征,恒星是双星。这证明这种类型的SN源自交互的二进制系统。

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