论文标题

中微子转移的特性在中子恒星合并的变形残留物中

Properties of neutrino transfer in a deformed remnant of neutron star merger

论文作者

Sumiyoshi, Kohsuke, Fujibayashi, Sho, Sekiguchi, Yuichiro, Shibata, Masaru

论文摘要

我们研究中微子转移的中微子转移的特性,由中子恒星合并的残留物,由庞大的中子恒星和周围的圆环组成。我们通过用动量空间角度和中微子的能量求解中微子转移的数值模拟,以用于伸长形状的合并残留物的快照。多维中中微子分布的评估使我们能够提供角度和能量光谱以及中微子反应速率的详细信息。我们通过确定每个能量的中子层来研究中微子的不对称中微子通量的特征,并研究中微子发射区域的特征。我们检查了中微子的排放和吸收,以通过中微子照射鉴定加热速率的重要成分。我们表明,$μ$ - 和$τ$ -Types中微子的贡献对于大型中子星上方的区域的加热很重要。我们还检查了由中微子分布功能直接计算的角度矩和Eddington张量,并将其与通过矩闭合方法获得的角度进行比较,该方法通常用于中微子放射水力动力学的研究。我们表明,爱丁顿张量的组成部分具有非单调的行为,并且闭合关系的近似可能因高能量中微子而不准确,因为高能中微子的通量由于扩展的合并残余而高度大,因此是高度的。

We study properties of neutrino transfer in a remnant of neutron star merger, consisting of a massive neutron star and a surrounding torus. We perform numerical simulations of the neutrino transfer by solving the Boltzmann equation with momentum-space angles and energies of neutrinos for snapshots of the merger remnant having elongated shapes. The evaluation of the neutrino distributions in the multi-dimensions enable us to provide the detailed information of angle and energy spectra and neutrino reaction rates. We demonstrate features of asymmetric neutrino fluxes from the deformed remnant and investigate the neutrino emission region by determining the neutrinosphere for each energy. We examine the emission and absorption of neutrinos to identify important ingredients of heating rates through neutrino irradiation. We show that the contributions of $μ$- and $τ$-types neutrinos are important for the heating in the region above the massive neutron star. We also examine the angle moments and the Eddington tensor calculated directly by the neutrino distribution functions and compare them with those obtained by a moment closure approach, which is often used in the study of neutrino-radiation hydrodynamics. We show that the components of the Eddington tensor have non-monotonic behaviors and the approximation of the closure relation may become inaccurate for high energy neutrinos, whose fluxes are highly aspherical due to the extended merger remnant.

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