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首页> 外文期刊>The Astrophysical journal >Ab-initio Pulsar Magnetosphere: Particle Acceleration in Oblique Rotators and High-energy Emission Modeling
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Ab-initio Pulsar Magnetosphere: Particle Acceleration in Oblique Rotators and High-energy Emission Modeling

机译:从头开始脉冲星磁层:倾斜转子中的粒子加速和高能发射模型

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We perform global particle-in-cell simulations of pulsar magnetospheres, including pair production, ion extraction from the surface, frame-dragging corrections, and high-energy photon emission and propagation. In the case of oblique rotators, the effects of general relativity increase the fraction of the open field lines that support active pair discharge. We find that the plasma density and particle energy flux in the pulsar wind are highly non-uniform with latitude. A significant fraction of the outgoing particle energy flux is carried by energetic ions, which are extracted from the stellar surface. Their energies may extend up to a large fraction of the open field line voltage, making them interesting candidates for ultra-high-energy cosmic rays. We show that pulsar gamma-ray radiation is dominated by synchrotron emission, produced by particles that are energized by relativistic magnetic reconnection close to the Y-point and in the equatorial current sheet. In most cases, the calculated light curves contain two strong peaks, which is in general agreement with Fermi observations. The radiative efficiency decreases with increasing pulsar inclination and increasing efficiency of pair production in the current sheet, which explains the observed scatter in L γ versus . We find that the high-frequency cutoff in the spectra is regulated by the pair-loading of the current sheet. Our findings lay the foundation for quantitative interpretation of Fermi observations of gamma-ray pulsars.
机译:我们对脉冲星磁层进行整体的单元格模拟,包括成对产生,从表面提取离子,拖曳校正以及高能光子的发射和传播。在倾斜旋转器的情况下,广义相对论的影响会增加支持有源对放电的开放磁场的比例。我们发现脉冲星风中的等离子体密度和粒子能量通量在纬度上高度不均匀。从粒子的恒星表面提取的高能离子携带了很大一部分输出粒子能量通量。它们的能量可能会扩展到开场线电压的很大一部分,使它们成为超高能宇宙射线的有趣候选者。我们显示脉冲星伽马射线辐射主要由同步加速器辐射控制,同步辐射是由相对论磁重连接靠近Y点和在赤道电流表中激发的粒子产生的。在大多数情况下,计算出的光曲线包含两个强峰,这与费米观测值总体上是一致的。在当前工作表中,辐射效率随脉冲星倾角的增加和线对生产效率的增加而降低,这解释了在Lγ与γ中观察到的散射。我们发现,频谱中的高频截止频率受当前工作表的成对加载的影响。我们的发现为费米伽马射线脉冲星观测的定量解释奠定了基础。

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