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广义相对论中子星合并模拟中的中微子输运

Neutrino transport in general relativistic neutron star merger simulations.

作者信息

Foucart Francois

机构信息

Department of Physics and Astronomy, University of New Hampshire, 9 Library Way, Durham, NH 03824 USA.

出版信息

Living Rev Comput Astrophys. 2023;9(1):1. doi: 10.1007/s41115-023-00016-y. Epub 2023 Feb 23.

Abstract

Numerical simulations of neutron star-neutron star and neutron star-black hole binaries play an important role in our ability to model gravitational-wave and electromagnetic signals powered by these systems. These simulations have to take into account a wide range of physical processes including general relativity, magnetohydrodynamics, and neutrino radiation transport. The latter is particularly important in order to understand the properties of the matter ejected by many mergers, the optical/infrared signals powered by nuclear reactions in the ejecta, and the contribution of that ejecta to astrophysical nucleosynthesis. However, accurate evolutions of the neutrino transport equations that include all relevant physical processes remain beyond our current reach. In this review, I will discuss the current state of neutrino modeling in general relativistic simulations of neutron star mergers and of their post-merger remnants. I will focus on the three main types of algorithms used in simulations so far: leakage, moments, and Monte-Carlo scheme. I will review the advantages and limitations of each scheme, as well as the various neutrino-matter interactions that should be included in simulations. We will see that the quality of the treatment of neutrinos in merger simulations has greatly increased over the last decade, but also that many potentially important interactions remain difficult to take into account in simulations (pair annihilation, oscillations, inelastic scattering).

摘要

中子星 - 中子星和中子星 - 黑洞双星系统的数值模拟,对于我们模拟由这些系统产生的引力波和电磁信号的能力起着重要作用。这些模拟必须考虑到广泛的物理过程,包括广义相对论、磁流体动力学和中微子辐射输运。后者对于理解许多并合事件喷射出的物质的性质、由喷射物中的核反应产生的光学/红外信号,以及该喷射物对天体物理核合成的贡献尤为重要。然而,包含所有相关物理过程的中微子输运方程的精确演化目前仍超出我们的能力范围。在这篇综述中,我将讨论在中子星并合及其并合后残骸的广义相对论模拟中中微子建模的现状。我将重点关注目前模拟中使用的三种主要算法类型:泄漏算法、矩算法和蒙特卡罗方法。我将回顾每种方法的优缺点,以及模拟中应包含的各种中微子 - 物质相互作用。我们将看到,在过去十年中,并合模拟中对中微子的处理质量有了很大提高,但同时也有许多潜在的重要相互作用在模拟中仍然难以考虑(对湮灭、振荡、非弹性散射)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c040/9950247/f18d4c26ac3f/41115_2023_16_Fig1_HTML.jpg

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