论文标题

一般相对论中微子运输中的等级3时刻闭合

Rank-3 Moment Closures in General Relativistic Neutrino Transport

论文作者

Richers, Sherwood

论文摘要

许多积聚磁盘的现代模拟使用基于力矩的方法进行辐射传输来确定磁盘的热演化和弹出物质的特性。流行的M1方案演变为排名0和排名1矩需要对等级2和更高张量的分析近似。我们提出了开源的蒙特卡洛稳态稳态中微子中微子转运代码Sedonugr,我们用它来评估基本的分析封闭假设,量化建议的封闭误差,并测试MEFD闭合到等级3时刻的扩展。我们证明,在所有分析封闭中采用的基本假设都受到了强烈侵犯。在赤道磁盘和疏散的极地区域之间的接口上,这种违规最为明显。最后,我们从中微子对歼灭中计算中微子的动量和能量沉积速率,并证明如果降级-2和较高的矩被忽略,则基于力矩的歼灭功率计算最多可至20%。在文献中的8个封闭式中,我们证明了不同的封闭情况再现了辐射场的不同方面(压力张量,升级3张量,对歼灭率),尽管MEFD,Levermore和Janka 2闭合都是合理的。 MEFD关闭中使用的中微子退化的额外信息无法解决排名2和等级3时刻的多样性。

Many modern simulations of accretion disks use moment-based methods for radiation transport to determine the thermal evolution of the disk and the properties of the ejected matter. The popular M1 scheme evolves the rank-0 and rank-1 moments requires an analytic approximation for the rank-2 and higher tensors. We present the open-source Monte Carlo steady-state general-relativistic neutrino transport code SedonuGR, which we use to asses fundamental analytic closure assumptions, quantify proposed closure errors, and test an extension of the MEFD closure to the rank-3 moment. We demonstrate that the fundamental assumptions employed in all analytic closures are strongly violated. This violation is most evident at the interface between the equatorial disk and the evacuated polar regions. Finally, we calculate the neutrino momentum and energy deposition rate from neutrino pair annihilation, and demonstrate that a moment-based annihilation power calculation is accurate to at most ~20% if the rank-2 and higher moments are neglected. Out of a selection of 8 closures in the literature, we demonstrate that different closures reproduce different aspects of the radiation field (pressure tensor, rank-3 tensor, pair annihilation rate), though the MEFD, Levermore, and Janka 2 closures are all reasonable. The extra information from the neutrino degeneracy used in the MEFD closure is unable to account for the diversity in the rank-2 and rank-3 moments.

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