论文标题
弱磁化的$γ$ ray爆发飞机的结构
The structure of weakly-magnetized $ γ$-ray burst jets
论文作者
论文摘要
伽马射线爆发(GRB)喷气机与它们被推出的密集介质的相互作用促进了沿喷气边界局部流体动力学不稳定性的增长。在同伴论文中,我们研究了流体动力学(未磁化)喷气机的演变,发现喷气孔材料的混合会产生界面层,称为Jet-Cocoon界面(JCI),其中包含很大一部分系统能量的界面。我们发现,当射流 + JCI到达同源相时,它们的角结构可以通过扁平芯(JET) +幂律函数(JCI)近似,其指数取决于混合程度。在本文中,我们研究了亚尺度环形磁场对射流演化和形态的影响。我们发现薄弱的田地可以稳定喷气机与当地不稳定性。混合的抑制会减少JCI,从而重塑喷气机的突破后结构。然而,尽管JCI幂律衰减更陡峭,但仍可以通过平坦的核心 + A幂律函数近似流出的整体形状。在长GRB喷气机中,弱场的效果更为突出,其中流体动力喷气机中的混合更强。简而言之,弱磁化和未吸收的喷气机中的混合量很小。该结果影响了由喷气机的形态支配的预期喷射排放。因此,长GRB中的及时观察结果可以用作喷气机底部磁性的探针。
The interaction of gamma-ray burst (GRB) jets with the dense media into which they are launched promote the growth of local hydrodynamic instabilities along the jet boundary. In a companion paper we study the evolution of hydrodynamic (unmagnetized) jets, finding that mixing of jet-cocoon material gives rise to an interface layer, termed jet-cocoon interface (JCI), which contains a significant fraction of the system energy. We find that the angular structure of the jet + JCI, when they reach the homologous phase, can be approximated by a flat core (the jet) + a power-law function (the JCI) with indices that depend on the degree of mixing. In this paper we examine the effect of subdominant toroidal magnetic fields on the jet evolution and morphology. We find that weak fields can stabilize the jet against local instabilities. The suppression of the mixing diminishes the JCI and thus reshapes the jet's post-breakout structure. Nevertheless, the overall shape of the outflow can still be approximated by a flat core + a power-law function, although the JCI power-law decay is steeper. The effect of weak fields is more prominent in long GRB jets, where the mixing in hydrodynamic jets is stronger. In short GRB jets there is small mixing in both weakly magnetized and unmagnetized jets. This result influences the expected jet emission which is governed by the jet's morphology. Therefore, prompt and afterglow observations in long GRBs may be used as probes for the magnetic nature at the base of the jets.