论文标题

合并Strangeon Stars II:弹射曲线和光曲线

Merging strangeon stars II: the ejecta and light curves

论文作者

Lai, X. Y., Xia, C. J., Yu, Y. W., Xu, R. X.

论文摘要

紧凑型恒星中的上核物质状态仍然令人困惑,有人认为脉冲星可能是奇怪的恒星。合并双重奇怪明星的后果值得探索,尤其是在多门徒天文学的新时代。为了开发论文I中提出的“ Strangeon Kilonova”场景,我们对弹出和光曲线的演变进行了定性描述,以合并双重奇怪的星星。在合并的热环境中,潮汐破坏和流体动力挤压弹出的奇异块将遭受蒸发,其中发出的过程颗粒(例如奇异子,中子和质子)会发出。考虑到奇异块掘金的蒸发和奇怪的腐烂,大多数奇怪的掘金会在被弹出后数十毫秒内变成中子和质子。不同颗粒的蒸发速率取决于温度,我们发现射流可能分别具有两个成分,分别具有高和低不透明度。高不透明度成分将位于赤道平面周围的方向上,低不透明度分量将在各个角度方向上。横梁测量光曲线表明,即使总弹出质量低至$ \ sim 10^{ - 4} m_ \ odot $,长期残留物的旋转功率也会解释Kilonova AT2017GFO的整个排放量,与GW 170817相关联的详细图像。

The state of supranuclear matter in compact stars remains puzzling, and it is argued that pulsars could be strangeon stars. The consequences of merging double strangeon stars are worth exploring, especially in the new era of multi-messenger astronomy. To develop the "strangeon kilonova" scenario proposed in Paper I, we make a qualitative description about the evolution of ejecta and light curves for merging double strangeon stars. In the hot environment of the merger, the strangeon nuggets ejected by tidal disruption and hydrodynamical squeezing would suffer from evaporation, in which process particles, such as strangeons, neutrons and protons, are emitted. Taking into account both the evaporation of strangeon nuggets and the decay of strangeons, most of the strangeon nuggets would turn into neutrons and protons, within dozens of milliseconds after being ejected. The evaporation rates of different particles depend on temperature, and we find that the ejecta could end up with two components, with high and low opacity respectively. The high opacity component would be in the directions around the equatorial plane, and the low opacity component would be in a broad range of angular directions. The bolometric light curves show that even if the total ejected mass would be as low as $\sim 10^{-4} M_\odot$, the spin-down power of the long-lived remnant would account for the whole emission of kilonova AT2017gfo associated with GW 170817. The detailed picture of merging double strangeon stars is expected to be tested by future numerical simulations.

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