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首页> 外文期刊>The Astrophysical journal >IMPACT OF QUARKS AND PIONS ON DYNAMICS AND NEUTRINO SIGNAL OF BLACK HOLE FORMATION IN NON-ROTATING STELLAR CORE COLLAPSE
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IMPACT OF QUARKS AND PIONS ON DYNAMICS AND NEUTRINO SIGNAL OF BLACK HOLE FORMATION IN NON-ROTATING STELLAR CORE COLLAPSE

机译:量子点和脉冲对非旋转恒星核心崩塌动力学和黑洞形成的中微子信号的影响

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In the formation process of black holes, the density and temperature of matter become sufficiently high for quarks and pions to appear. In this study, we numerically investigate stellar core collapse and black hole formation taking into account the equations of state involving quarks and/or pions. In our simulations, we utilize a code that solves the general relativistic hydrodynamics and neutrino transfer equations simultaneously, treating neutrino reactions in detail under spherical symmetry. Initial models with three different masses, namely, 40, 100, and 375 M ☉, are adopted. Our results show that quarks and pions shorten the duration of neutrino emission if the collapse bounces before black hole formation. In addition, pions increase the luminosity and average energy of neutrinos before black hole formation. We also find that the hadron-quark phase transition leads to an interesting evolution of temperature. Moreover, the neutrino event number is evaluated for the currently operating neutrino detector, SuperKamiokande, to confirm that it is not only detectable but also affected by the emergence of quarks and pions for Galactic events. While there are some issues, such as hyperons, beyond the scope of this study, this is the first serious attempt to assess the impact of quarks and pions in dynamical simulations of black hole formation and will serve as an important foundation for future studies.
机译:在黑洞的形成过程中,物质的密度和温度变得足够高,以至于不会出现夸克和介子。在这项研究中,我们考虑到涉及夸克和/或介子的状态方程,数值研究了恒星核塌陷和黑洞形成。在我们的模拟中,我们利用一个代码同时解决了广义相对论流体力学和中微子传递方程,在球对称下详细处理了中微子反应。采用具有三种不同质量的初始模型,即40、100和375 M☉。我们的结果表明,如果崩溃在黑洞形成之前反弹,夸克和介子会缩短中微子发射的持续时间。另外,在黑洞形成之前,介子会增加中微子的发光度和平均能量。我们还发现强子夸克相变会导致温度发生有趣的变化。此外,对当前运行的中微子检测器SuperKamiokande评估了中微子事件编号,以确认它不仅可检测到,而且受银河事件的夸克和介子的出现影响。尽管存在一些问题,例如超子,但超出了本研究的范围,但这是评估夸克和介子在黑洞形成动力学模拟中的影响的首次认真尝试,并将作为将来研究的重要基础。

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