论文标题

光谱四倍体作为亚chandrasekhar型ia型超新星的可能祖细胞

A spectroscopic quadruple as a possible progenitor of sub-Chandrasekhar Type Ia supernovae

论文作者

Merle, T., Hamers, A. S., Van Eck, S., Jorissen, A., Van der Swaelmen, M., Pollard, K., Smiljanic, R., Pourbaix, D., Zwitter, T., Traven, G., Gilmore, G., Randich, S., Gonneau, A., Hourihane, A., Sacco, G., Worley, C. C.

论文摘要

IA型超新星(SNIA)爆炸的祖细胞引起了很多关注,但是紧密的三重或四倍系统中的长期重力效应也可能在产生SNIA中起关键作用。在这里,我们报告了在恒星集群中发现的光谱四倍体(SB4)的性能:2+2层次结构系统HD 74438。它在开放群集IC 2391中的成员资格使其成为迄今为止最小的SB4(43 MY)SB4在迄今为止发现,并且在具有短的外部外孔的四倍体系统中。 6年外时期的偏心率为0.46,两个内轨道为20.5 d和4.4 d,偏心率为0.36和0.15,不是共浮标。使用地面高分辨率光谱和Gaia/Hipparcos星体的创新组合,我们表明该系统正在经历世俗的相互作用,这可能会泵入其组成部分光谱类型的内部轨道之一的偏心率。我们计算了HD 74438的未来演变,并表明该系统是通过白色矮人(WD)合并的Sub-Chandrasekhar Snia的出色候选祖先。考虑到这种特定类型的SNIA的贡献更好地解释了银河系中铁峰元素的化学演化,而不是仅考虑Chandrasekhar-Mass SNIA。

Binaries have received much attention as possible progenitors of Type Ia supernova (SNIa) explosions, but long-term gravitational effects in tight triple or quadruple systems could also play a key role in producing SNIa. Here we report on the properties of a spectroscopic quadruple (SB4) found within a star cluster: the 2+2 hierarchical system HD 74438. Its membership in the open cluster IC 2391 makes it the youngest (43 My) SB4 discovered so far and among the quadruple systems with the shortest outer orbital period. The eccentricity of the 6 y outer period is 0.46 and the two inner orbits, with periods of 20.5 d and 4.4 d, and eccentricities of 0.36 and 0.15, are not coplanar. Using an innovative combination of ground-based high resolution spectroscopy and Gaia/Hipparcos astrometry, we show that this system is undergoing secular interaction that likely pumped the eccentricity of one of the inner orbits higher than expected for the spectral types of its components. We compute the future evolution of HD 74438 and show that this system is an excellent candidate progenitor of sub-Chandrasekhar SNIa through white dwarf (WD) mergers. Taking into account the contribution of this specific type of SNIa better accounts for the chemical evolution of iron-peak elements in the Galaxy than considering only near Chandrasekhar-mass SNIa.

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