首页> 外文期刊>The Astrophysical Journal. Letters >ECCENTRIC MERGERS OF BLACK HOLES WITH SPINNING NEUTRON STARS
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ECCENTRIC MERGERS OF BLACK HOLES WITH SPINNING NEUTRON STARS

机译:旋转中子星与黑洞的偏心合并

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We study dynamical capture binary black hole-neutron star (BH-NS) mergers focusing on the effects of the neutron star spin. These events may arise in dense stellar regions, such as globular clusters, where the majority of neutron stars are expected to be rapidly rotating. We initialize the BH-NS systems with positions and velocities corresponding to marginally unbound Newtonian orbits, and evolve them using general-relativistic hydrodynamical simulations. We find that even moderate spins can significantly increase the amount of mass in unbound material. In some of the more extreme cases, there can be up to a third of a solar mass in unbound matter. Similarly, large amounts of tidally stripped material can remain bound and eventually accrete onto the BH-as much as a tenth of a solar mass in some cases. These simulations demonstrate that it is important to treat neutron star spin in order to make reliable predictions of the gravitational wave and electromagnetic transient signals accompanying these sources.
机译:我们研究动态捕获二进制黑洞-中子星(BH-NS)合并,重点是中子星自旋的影响。这些事件可能发生在稠密的恒星区,例如球状星团中,在那儿,大多数中子星会迅速旋转。我们用与边际无界牛顿轨道相对应的位置和速度来初始化BH-NS系统,并使用广义相对论流体力学模拟对其进行演化。我们发现,即使适度旋转也可以显着增加未结合物质的质量。在某些更极端的情况下,未结合的物质可能多达太阳质量的三分之一。同样,在某些情况下,大量潮汐剥离后的材料可能仍会束缚并最终积聚在BH上,相当于太阳质量的十分之一。这些模拟表明,为了对伴随这些源的引力波和电磁瞬态信号做出可靠的预测,处理中子星自旋很重要。

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