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AB INITIO PULSAR MAGNETOSPHERE: THE ROLE OF GENERAL RELATIVITY

机译:AB INITIO PULSAR磁球:一般相对论的作用

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It has recently been demonstrated that self-consistent particle-in-cell simulations of low-obliquity pulsar magnetospheres in flat spacetime show weak particle acceleration and no pair production near the poles. We investigate the validity of this conclusion in a more realistic spacetime geometry via general-relativistic particle-in-cell simulations of the aligned pulsar magnetosphere with pair formation. We find that the addition of the frame-dragging effect makes the local current density along the magnetic field larger than the Goldreich-Julian value, which leads to unscreened parallel electric fields and the ignition of a pair cascade. When pair production is active, we observe field oscillations in the open field bundle, which could be related to pulsar radio emission. We conclude that general-relativistic effects are essential for the existence of the pulsar mechanism in low-obliquity rotators.
机译:最近已经证明,在平坦时空中低倾角脉冲星磁层的自洽单元内粒子模拟显示了较弱的粒子加速度,并且在磁极附近没有成对产生。我们通过对准对脉冲星磁层成对形成的广义相对论单元内粒子模拟,研究了这一结论在更现实的时空几何中的有效性。我们发现,增加框架拖曳效应会使沿磁场的局部电流密度大于Goldreich-Julian值,这会导致未屏蔽的平行电场和一对级联的点火。当成对产生活跃时,我们观察到开放场束中的场振荡,这可能与脉冲星无线电发射有关。我们得出结论,相对论效应对于低倾角旋转器中脉冲星机制的存在至关重要。

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