论文标题
喷气范围相互作用对基洛诺瓦光曲线的视角依赖性的影响
The Effect of Jet-Ejecta Interaction on the Viewing Angle Dependence of Kilonova Light Curves
论文作者
论文摘要
两个中子星的合并产生了放射性重核的流出。在合并的一秒钟内,中央残留物也有望发射相对论的喷气机,这会冲击并破坏放射性喷射的一部分。在几个小时内,放射性材料的排放会产生紫外线,光学和红外瞬态(KILONOVA)。我们将JET-EXTACA相互作用的2D相对论流体动力学模拟的终点作为最初条件,用于合并后1.5h的多维蒙特卡洛辐射传输模拟模拟。我们发现,在这个时间尺度上,喷气冲击加热不会影响Kilonova的排放。但是,喷射对喷射的密度结构的破坏确实改变了光曲线。射流将通道雕刻到原本球形的喷射中,揭示了热的内部区域。从近距离($ \ lyssim 30°$)中可以看出,射流轴,基洛诺瓦的亮度更大,较蓝。这种效果的强度取决于射流参数,因为更严重的弹射器的光曲线受到更大的影响。在紫外线中,光曲线和光谱在紫外线中也比光学更重。
The merger of two neutron stars produces an outflow of radioactive heavy nuclei. Within a second of merger, the central remnant is expected to also launch a relativistic jet, which shock-heats and disrupts a portion of the radioactive ejecta. Within a few hours, emission from the radioactive material gives rise to an ultraviolet, optical, and infrared transient (a kilonova). We use the endstates of a suite of 2D relativistic hydrodynamic simulations of jet-ejecta interaction as initial conditions for multi-dimensional Monte Carlo radiation transport simulations of the resulting viewing angle-dependent light curves and spectra starting at 1.5h after merger. We find that on this timescale, jet shock heating does not affect the kilonova emission. However, the jet disruption to the density structure of the ejecta does change the light curves. The jet carves a channel into the otherwise spheroidal ejecta, revealing the hot, inner regions. As seen from near ($\lesssim 30 °$) the jet axis, the kilonova is brighter by a factor of a few and bluer. The strength of this effect depends on the jet parameters, since the light curves of more heavily disrupted ejecta are more strongly affected. The light curves and spectra are also more heavily modified in the ultraviolet than in the optical.