论文标题

来自全球非球形几何形状的Kilonova光曲线的倾斜度依赖性

Inclination Dependence of Kilonova Light Curves from Globally Aspherical Geometries

论文作者

Darbha, Siva, Kasen, Daniel

论文摘要

两个中子星(NSS)或中子恒星和黑洞(BH)的合并产生的放射性瞬态称为Kilonova,首先观察到引力波事件GW170817。尽管Kilonovae经常以球形对称性建模,但动态弹出和磁盘流出可能是非常不对称的。我们使用Monte Carlo辐射转移计算来研究具有全球轴对称几何形状(例如椭圆形和圆环)的Kilonovae的光曲线。我们发现,这些模型的光度变化在早期最为明显,并且降低直到光曲线在晚期光学薄相中成为各向同性。光曲线形状和峰值时间没有通过全局不对称性显着改变。我们表明,沿视线的投影表面积捕获了主要的几何效应,并使用此事实来简单地对依赖于方向依赖的光曲线的分析估计。对于伴随GW170817的Kilonova,与球形病例相比,轴向比率的不对称性占轴向比率$ 2 $ 2 $($ 1/2 $)的椭圆形椭圆形导致$ \ sim 40 \%$减少(增加)。对于某些NS-BH合并,预期更大的极端不对称性,预计钢对备量器的方向效应将显着更大($ \ sim 5-10 $)。

The merger of two neutron stars (NSs) or a neutron star and a black hole (BH) produces a radioactively-powered transient known as a kilonova, first observed accompanying the gravitational wave event GW170817. While kilonovae are frequently modeled in spherical symmetry, the dynamical ejecta and disk outflows can be considerably asymmetric. We use Monte Carlo radiative transfer calculations to study the light curves of kilonovae with globally axisymmetric geometries (e.g. an ellipsoid and a torus). We find that the variation in luminosity in these models is most pronounced at early times, and decreases until the light curves become isotropic in the late optically thin phase. The light curve shape and peak time are not significantly modified by the global asymmetry. We show that the projected surface area along the line of sight captures the primary geometric effects, and use this fact to provide a simple analytic estimate of the direction-dependent light curves of the aspherical ejecta. For the kilonova accompanying GW170817, accounting for asymmetry with an oblate (prolate) ellipsoid of axial ratio $2$ ($1/2$) leads to a $\sim 40 \%$ decrease (increase) in the inferred ejecta mass compared to the spherical case. The pole-to-equator orientation effects are expected to be significantly larger (a factor of $\sim 5 - 10$) for the more extreme asymmetries expected for some NS-BH mergers.

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