论文标题
二进制中子恒星合并的更新的核能物理和多门机天体物理框架
An updated nuclear-physics and multi-messenger astrophysics framework for binary neutron star mergers
论文作者
论文摘要
引力波信号GW170817,相应的Kilonova AT2017GFO和短伽马射线爆发GRB170817A的多通信器检测,以及观察到的余波提供了科学的突破。为了对所有这些不同的使者进行准确的解释,需要强大的理论模型来描述发射的引力波,电磁发射和密集的物质。此外,人们需要有效,准确的计算工具,以确保模型与观察数据之间正确的互相关。为此,我们开发了核能物理学和多门神天体物理学框架NMMA。该代码允许在低密度以及X射线和无线电观察结果上纳入核形理的约束。在先前的工作中,NMMA代码使我们能够约束近核密度物质状态的方程,以测量哈勃常数,并比较中子星和重离子碰撞中探测的密集物理学,并在重型离子碰撞中进行分类,并对电磁观测和进行分类。在这里,我们展示了NMMA代码的扩展,这是分析重力波信号,Kilonova和Gamma-ray同时爆发余辉的首次尝试。结合了所有可用信息,我们估计$ 14M_ \ odot $中子星的半径为$ r = 11.98^{+0.35} _ { - 0.40} $ km。
The multi-messenger detection of the gravitational-wave signal GW170817, the corresponding kilonova AT2017gfo and the short gamma-ray burst GRB170817A, as well as the observed afterglow has delivered a scientific breakthrough. For an accurate interpretation of all these different messengers, one requires robust theoretical models that describe the emitted gravitational-wave, the electromagnetic emission, and dense matter reliably. In addition, one needs efficient and accurate computational tools to ensure a correct cross-correlation between the models and the observational data. For this purpose, we have developed the Nuclear-physics and Multi-Messenger Astrophysics framework NMMA. The code allows incorporation of nuclear-physics constraints at low densities as well as X-ray and radio observations of isolated neutron stars. In previous works, the NMMA code has allowed us to constrain the equation of state of supranuclear dense matter, to measure the Hubble constant, and to compare dense-matter physics probed in neutron-star mergers and in heavy-ion collisions, and to classify electromagnetic observations and perform model selection. Here, we show an extension of the NMMA code as a first attempt of analyzing the gravitational-wave signal, the kilonova, and the gamma-ray burst afterglow simultaneously. Incorporating all available information, we estimate the radius of a $1.4M_\odot$ neutron star to be $R=11.98^{+0.35}_{-0.40}$km.