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A MODEL FOR THE CHALLENGING 'BI-DRIFTING' PHENOMENON IN PSR J0815+09

机译:PSR J0815 + 09中具有挑战性的“双向迁移”现象的模型

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摘要

A new drifting pulsar, PSR J0815+09, was discovered in the Arecibo drift-scan searches. An intriguing feature of this source is that within the four pulse components in the integrated pulse profile, the subpulse drifting direction in the two leading components is opposite from that in the two trailing components. In the view that the leading theoretical model for pulsar subpulse drifting can only interpret one-direction subpulse drifting, the observed bi-drifting phenomenon from PSR J0815+09 poses a great challenge to the pulsar theory. The inner annular gap (IAG), a new type of inner particle accelerator, was recently proposed to explain both γ-ray and radio emission from pulsars. Here we show that the coexistence of the IAG and the conventional inner core gap offers a natural interpretation to the bi-drifting phenomenon. In particular, the peculiar drifting behavior in PSR J0815+09 can be reproduced within the inverse Compton scattering model for pulsar radio emission.
机译:在Arecibo漂移扫描搜索中发现了一种新的漂移脉冲星PSR J0815 + 09。该信号源的一个引人入胜的特征是,在积分脉冲分布图的四个脉冲分量内,两个前导分量中的子脉冲漂移方向与两个尾随分量中的相反。鉴于脉冲星亚脉冲漂移的领先理论模型只能解释单向子脉冲漂移,从PSR J0815 + 09观察到的双漂移现象对脉冲星理论提出了巨大挑战。内环间隙(IAG)是一种新型的内粒子加速器,最近被提出来解释脉冲星的γ射线和无线电发射。在这里,我们证明了IAG和常规内芯间隙的共存为双漂移现象提供了自然的解释。特别是,可以在用于脉冲星无线电发射的逆康普顿散射模型中再现PSR J0815 + 09中特有的漂移行为。

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