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Intermittent mildly magnetized jets as the source of GRBs

机译:间歇温和地磁化喷射作为GRBS的来源

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Gamma-ray bursts (GRBs) are powered by relativistic jets that exhibit intermittency over a broad range of time-scales - from similar to ms to seconds. Previous numerical studies have shown that hydrodynamic (i.e. unmagnetized) jets that are expelled from a variable engine are subject to strong mixing of jet and cocoon material, which strongly inhibits the GRB emission. In this paper, we conduct 3D RMHD simulations of mildly magnetized jets with power modulation over durations of 0.1 s and 1 s, and a steady magnetic field at injection. We find that when the jet magnetization at the launching site is sigma similar to 0.1, the initial magnetization is amplified by shocks formed in the flow to the point where it strongly suppresses baryon loading. We estimate that a significant contamination can be avoided if the magnetic energy at injection constitutes at least a few percent of the jet energy. The variability time-scales of the jet after it breaks out of the star are then governed by the injection cycles rather than by the mixing process, suggesting that in practice jet injection should fluctuate on timescales as short as similar to 10 ms in order to account for the observed light curves. Better stability is found for jets with shorter modulations. We conclude that for sufficiently hot jets, the Lorentz factor near the photosphere can be high enough to allow efficient photospheric emission. Our results imply that jets with 10(-2) < sigma < 1 injected by a variable engine with similar to 10 ms duty cycle are plausible sources of long GRBs.
机译:伽马射线突发(GRBS)由相对论的喷射器提供动力,在广泛的时间尺度上表现出间歇性 - 从类似于MS到秒。先前的数值研究表明,从可变发动机排出的流体动力学(即,未磁化的)射流受到射流和茧材料的强混合,这强烈抑制了GRB排放。在本文中,我们通过0.1 s和1 s的持续时间进行温和磁化喷射的3D RMHD模拟,并在注射时具有稳定的磁场。我们发现,当发射部位的喷射磁化是类似于0.1时,通过在流动中形成的冲击,初始磁化被放大到它强烈抑制Baryon负载的程度。如果注射时的磁能构成至少几个喷射能量,则估计可以避免显着的污染。然后,射流从星形中破坏的可变性时间尺度然后由注射循环而不是通过混合过程来控制,这表明在实践中,喷射注射应该在时间尺度上波动,与10 ms类似于10 ms以便算作对于观察到的光曲线。发现具有较短调制的喷气机更好的稳定性。我们得出结论,对于足够热的喷气机,Photosphere附近的洛伦兹因子足够高,以允许有效的拍摄性。我们的结果意味着带有10(2)个

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