论文标题

年轻磁铁的地壳故障率

On the rate of crustal failures in young magnetars

论文作者

Dehman, Clara, Viganò, Daniele, Rea, Nanda, Pons, Jose A., Perna, Rosalba, Gracía-Gracía, Alberto

论文摘要

磁铁的活性由其强烈而动态的磁场提供动力,并已被提议作为触发触发阿加拉术快速无线电爆发。在这里,我们通过计算详细的磁性热模拟中的磁应力来估计年轻磁铁中的地壳故障的频率,包括大厅漂移和欧姆消散。出生时的最初内部拓扑是鲜为人知的,但可能比偶极子更为复杂。因此,我们探索了广泛的初始配置,发现地壳故障的预期率取决于数量级,具体取决于初始磁性构型。我们的结果表明,该速率与地壳磁能缩放,而不是与与旋转扭矩相关的偶极组件的经常使用的表面值。给定偶极组件的地壳故障的估计频率可能因不同初始条件的数量级而有所不同,这取决于在地壳非偶极成分中分布多少磁能,这可能在新生儿磁场中占主导地位。通过更好地处理核心中磁性演变和弹性/塑料地壳响应,可以提高预期事件速率的定量可靠性,此处不包括。无论如何,我们的结果都是在建模年轻银河磁铁爆发速率及其与我们和其他星系中快速无线电爆发的关系时的有用输入。

The activity of magnetars is powered by their intense and dynamic magnetic fields and has been proposed as the trigger to extragalactic Fast Radio Bursts. Here we estimate the frequency of crustal failures in young magnetars, by computing the magnetic stresses in detailed magneto-thermal simulations including Hall drift and Ohmic dissipation. The initial internal topology at birth is poorly known but is likely to be much more complex than a dipole. Thus, we explore a wide range of initial configurations, finding that the expected rate of crustal failures varies by orders of magnitude depending on the initial magnetic configuration. Our results show that this rate scales with the crustal magnetic energy, rather than with the often used surface value of the dipolar component related to the spin-down torque. The estimated frequency of crustal failures for a given dipolar component can vary by orders of magnitude for different initial conditions, depending on how much magnetic energy is distributed in the crustal non-dipolar components, likely dominant in newborn magnetars. The quantitative reliability of the expected event rate could be improved by a better treatment of the magnetic evolution in the core and the elastic/plastic crustal response, here not included. Regardless of that, our results are useful inputs in modelling the outburst rate of young Galactic magnetars, and their relation with the Fast Radio Bursts in our and other galaxies.

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