论文标题
中子星 - 黑洞二进制系统的合并期间可能的电磁现象
Possible Electromagnetic Phenomena during the Coalescence of Neutron Star-Black Hole Binary Systems
论文作者
论文摘要
考虑到中子星黑孔二进制聚集期间电磁(EM)辐射产生的可能模型。在中子恒星和黑洞的聚结合期间,黑洞周围的残留磁盘的质量是通过考虑中子恒星的状态方程以及在聚结之前的二进制组件的旋转来计算的。合并之前的二元系统的参数(质量比,组分旋转,中子恒星磁场)是通过种群合成方法计算的。合并后,在黑洞周围的残留磁盘的衍生质量用于估计Blandford-Znajek机制发射的相对论喷气机的动能。形成短伽玛射线爆发所需的圆盘质量超过$ \ sim 0.05 m_ \ odot $在不超过1-10 \%的凝聚力中获得(取决于状态方程)。效率较低的普通信封(一个大参数$α_{CE} $)会导致更大的事件发生,并随着天体物理有趣的EM能量释放。对于具有较大质量比的二进制文件,在合并之前,磁化中子恒星未受到潮汐破坏的影响,考虑了电动电荷旋转黑洞(WALD电荷)形成的可能性,并估计了合并后这种黑洞后释放的最大EM功率。讨论了在钙化前阶段共凝聚的脉冲星黑孔二进制物中产生的相对论Lepton等离子体中发射的引力波的转化。
Possible models for the generation of electromagnetic (EM) radiation during the coalescence of neutron star-black hole binaries are considered. The mass of the remnant disk around the black hole during the coalescence of neutron stars and black holes is calculated by taking into account the equation of state for neutron stars and the rotation of the binary components before the coalescence. The parameters of binary systems before the coalescence (the mass ratio, the component rotation, the neutron star magnetic field) are calculated by the population synthesis method. The derived mass of the remnant disk around the black hole after the coalescence is used to estimate the kinetic energy of the relativistic jet launched by the Blandford-Znajek mechanism. A disk mass of more than $\sim 0.05 M_\odot$ required for the formation of short gamma-ray bursts is shown to be obtained in no more than 1-10\% of the coalescences (depending on the equation of state). Less efficient common envelopes (a large parameter $α_{CE}$) lead to a noticeably larger percentage of events with astrophysically interesting EM energy release. For binaries with a large mass ratio, in which a magnetized neutron star is not subjected to tidal disruption before the coalescence, the possibility of the formation of an electrically charged rotating black hole (Wald charge) is considered and estimates of the maximum EM power released by such a black hole after the coalescence are made. The conversion of the emitted gravitational waves into electromagnetic ones in the relativistic lepton plasma generated in coalescing pulsar-black hole binaries at the pre-coalescence stage is discussed.