论文标题

喷气机可以使中子星合并蓝色的放射性动力发射吗?

Can jets make the radioactively powered emission from neutron star mergers bluer?

论文作者

Nativi, Lorenzo, Bulla, Mattia, Rosswog, Stephan, Lundman, Christoffer, Kowal, Grzegorz, Gizzi, Davide, Lamb, Gavin Paul, Perego, Albino

论文摘要

中子恒星合并含量富含中子的物质,其中合成了沉重的元素。这些新鲜合成的元素的衰变为电磁瞬变(“大诺维”或“ Kilonovae”)的动力,其发光度和色彩在很大程度上取决于它们的核成分。如果射出非常富含中子(电子分数$ y_ \ mathrm {e} <0.25 $),它们包含相当数量的灯笼和actinides,它们具有较大的不透性,因此有效地将射线辐射捕获了射流内部的辐射。即使是少量这种高宽敞的材料也会掩盖下撒谎物质的发射,因此充当“灯笼窗帘”。在这里,我们研究了通过喷射的相对论喷射如何在大诺娃开始发光之前可能会推出大量高不透明度材料的大部分。我们将详细的中微子驱动风研究的结果作为初始条件,并使用3D特殊的相对论水动力学模拟探索喷气机如何通过这些风传播。随后,我们执行蒙特卡洛辐射转移计算以探索所得的大分子发射。我们发现,射流打孔的孔在发射的头几天内使大号观察者的孔更加明亮,更强大的喷气机对大诺娃产生了更大的影响。

Neutron star mergers eject neutron-rich matter in which heavy elements are synthesised. The decay of these freshly synthesised elements powers electromagnetic transients ("macronovae" or "kilonovae") whose luminosity and colour strongly depend on their nuclear composition. If the ejecta are very neutron-rich (electron fraction $Y_\mathrm{e} < 0.25$), they contain fair amounts of lanthanides and actinides which have large opacities and therefore efficiently trap the radiation inside the ejecta so that the emission peaks in the red part of the spectrum. Even small amounts of this high-opacity material can obscure emission from lower lying material and therefore act as a "lanthanide curtain". Here, we investigate how a relativistic jet that punches through the ejecta can potentially push away a significant fraction of the high opacity material before the macronova begins to shine. We use the results of detailed neutrino-driven wind studies as initial conditions and explore with 3D special relativistic hydrodynamic simulations how jets are propagating through these winds. Subsequently, we perform Monte Carlo radiative transfer calculations to explore the resulting macronova emission. We find that the hole punched by the jet makes the macronova brighter and bluer for on-axis observers during the first few days of emission, and that more powerful jets have larger impacts on the macronova.

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