完全广义相对论下黑洞环面系统的辐射磁流体动力学:迈向物理模拟的一步

M. Shibata, Y. Sekiguchi
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引用次数: 27

摘要

首次在完全广义相对论的框架下对黑洞环面系统进行了辐射-磁流体动力学模拟。截断矩形式被用于广义相对论中微子辐射输运。一些黑洞质量为MBH = 30或6M,黑洞自旋为零,环面质量≈0.14-0.38的系统演化为双中子星或黑洞-中子星双星合并后形成的残余物模型。对高密度高温物质的状态方程和微观物理进行了半定量的现象学研究。发现环面内部区域的温度达到bbb10 MeV,这增强了中微子的高亮度,MBH =6时为10 51 ergs, MBH =3时为10 52 ergs。结果表明,在自转轴附近,中微子可能主要向外发射,它们的能量密度可能高到足以通过中微子-反中微子对湮灭过程发射低能短伽马射线暴,总能量沉积为10 47 - 10 49尔格。我们的模型还表明,当MBH =3 M°时,中微子的光度大于电磁光度,而当MBH =6 M°时,中微子的光度与电磁光度相当或略小于电磁光度。学科索引:420、425
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Radiation magnetohydrodynamics for black hole-torus system in full general relativity: A step toward physical simulation
A radiation-magnetohydrodynamic simulation for the black hole-torus system is per- formed in the framework of full general relativity for the first time. A truncated moment formalism is employed for a general relativistic neutrino radiation transport. Several systems in which the black hole mass is MBH =3o r 6M� , the black hole spin is zero, and the torus mass is ≈ 0.14-0.38Mare evolved as models of the remnant formed after the merger of binary neutron stars or black hole-neutron star binaries. The equation of state and micro- physics for the high-density and high-temperature matter are phenomenologically taken into account in a semi-quantitative manner. It is found that the temperature in the inner region of the torus reaches > 10 MeV which enhances a high luminosity of neutrinos ∼ 10 51 ergs/s for MBH =6 Mand ∼ 10 52 ergs/s for MBH =3 M� . It is shown that neutrinos are likely to be emitted primarily toward the outward direction in the vicinity of the rotational axis and their energy density may be high enough to launch a low-energy short gamma-ray burst via the neutrino-antineutrino pair-annihilation process with the total energy deposition ∼ 10 47 - 10 49 ergs. It is also shown in our model that for MBH =3 M� , the neutrino luminosity is larger than the electromagnetic luminosity while for MBH =6 M� , the neutrino luminosity is comparable to or slightly smaller than the electromagnetic luminosity. Subject Index: 420, 425
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来源期刊
Progress of Theoretical Physics
Progress of Theoretical Physics 物理-物理:综合
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