论文标题

在低金属性星系phl 293b中,巨大恒星可能消失

The possible disappearance of a massive star in the low metallicity galaxy PHL 293B

论文作者

Allan, Andrew, Groh, Jose, Mehner, Andrea, Smith, Nathan, Boian, Ioana, Farrell, Eoin, Andrews, Jennifer

论文摘要

我们研究了最贫穷的矮人星系之一,phl〜293b,可疑的巨大恒星。令人兴奋的是,我们发现2019年光谱中恒星特征的突然消失,尤其是具有与大量发光蓝色变量(LBV)恒星有关的宽H线。 2019年获得ESO VLT的浓缩咖啡和X射手仪器,我们的光谱不存在此类功能。我们使用符合观察到的LBV光谱的CMFGEN计算辐射转移模型,并且与地面和档案中的Hubble空间望远镜光度法一致。我们的模型表明,在2001--2011期间,LBV具有亮度$ l_* = 2.5-3.5 \ times 10^6〜l _ {\ odot} $,一种质量 - 左右$ \ dot {m} = 0.005-0.0.0.020〜m _ {\ odot} 1000〜km〜s $^{ - 1} $,$ t_ \ mathrm {eff} = 6000-6800 $ 〜k和$ t_ \ mathrm {*} = 9500-15000 $ 〜k。这些恒星特性表明了喷发状态。我们考虑了自2011年以来获得的光谱中没有广泛的发射成分的两个主要假设。一种可能性是,我们看到了幸存恒星的LBV爆发的末端,其亮度轻度下降,转向更热的有效温度,并进行了一些灰尘遮挡。另外,LBV可能会倒在一个巨大的黑洞上,而不会产生明亮的超新星。

We investigate a suspected very massive star in one of the most metal-poor dwarf galaxies, PHL~293B. Excitingly, we find the sudden disappearance of the stellar signatures from our 2019 spectra, in particular the broad H lines with P~Cygni profiles that have been associated with a massive luminous blue variable (LBV) star. Such features are absent from our spectra obtained in 2019 with the ESPRESSO and X-shooter instruments of the ESO's VLT. We compute radiative transfer models using CMFGEN that fit the observed spectrum of the LBV and are consistent with ground-based and archival Hubble Space Telescope photometry. Our models show that during 2001--2011 the LBV had a luminosity $L_* = 2.5-3.5 \times 10^6 ~L_{\odot}$, a mass-loss rate $\dot{M} = 0.005-0.020 ~M_{\odot}$~yr$^{-1}$, a wind velocity of 1000~km~s$^{-1}$, and effective and stellar temperatures of $T_\mathrm{eff} = 6000-6800$~K and $T_\mathrm{*}=9500-15000$~K. These stellar properties indicate an eruptive state. We consider two main hypotheses for the absence of the broad emission components from the spectra obtained since 2011. One possibility is that we are seeing the end of an LBV eruption of a surviving star, with a mild drop in luminosity, a shift to hotter effective temperatures, and some dust obscuration. Alternatively, the LBV could have collapsed to a massive black hole without the production of a bright supernova.

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