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Neutrino and Electron-positron Pair Emission from Phase-induced Collapse of Neutron Stars to Quark Stars

机译:中微子和电子 - 正电子对中子恒星坍塌到夸克恒星的发射

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We study the energy released from phase-transition induced collapse of neutron stars, which results in large amplitude stellar oscillations. To model this process we use a Newtonian hydrodynamic code, with a high resolution shock-capturing scheme. The physical process considered is a sudden phase transition from normal nuclear matter to a mixed phase of quark and nuclear matter. We show that both the temperature and the density at the neutrinosphere oscillate with time. However, they are nearly 180° out of phase. Consequently, extremely intense, pulsating neutrino/antineutrino and leptonic pair fluxes will be emitted. During this stage several mass ejecta can be ejected from the stellar surface by the neutrinos and antineutrinos. These ejecta can be further accelerated to relativistic speeds by the electron/positron pairs, created by the neutrino and antineutrino annihilation outside the stellar surface. We suggest that this process may be a possible mechanism for short Gamma-Ray Bursts.
机译:我们研究了从相转移引起的中子恒星坍塌释放的能量,从而导致大的振幅竖起振荡。为了模拟此过程,我们使用具有高分辨率冲击捕获方案的牛顿流体动力学代码。考虑的物理过程是从正常核物质到夸克和核问题的混合阶段的突然阶段过渡。我们表明,随着时间的推移,中性圈的温度和密度都振荡。但是,它们几乎不在阶段180°。因此,将发出极其强烈,脉动中性粒/抗氨基和轻液对助熔剂。在此期间,可以通过Neutrinos和Antineutrinos从恒星表面喷射几个质量喷射物。这些喷射器可以进一步加速通过电子/正电子对的相对论速度,由恒星表面外部的中微子和抗内鲁诺湮灭产生。我们建议该过程可能是短伽马射线突发的可能机制。

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