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Radiation properties of pulsar magnetospheres: observation, theory, and experiment

机译:脉冲星磁层的辐射特性:观察,理论和实验

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Summary form only given. The accumulated body of observational data from pulsar sources puts constraints on models that seek to explain their periodic radiation. This paper reviews this data, reports on a VLA search for haloes predicted by an early model, and reinvestigates a magnetospheric disk-field-aligned-current transmission line system as the origin of the observed radiation, with external wave excitation by as yet an unexplained source. Three dimensional, fully electromagnetic particle-in-cell simulations of the pulsar surface and magnetosphere are used to explore the waveshape and polarization properties of the observed radiation. The multipulse characteristic is consistent with existence of a wave resonator at the lower pulsar 'ionospheric' boundary.
机译:仅提供摘要表格。来自脉冲星源的观测数据的累积体对试图解释其周期性辐射的模型施加了限制。本文回顾了这些数据,报告了用VLA搜索早期模型预测的晕轮,并重新研究了磁层磁盘场对准电流传输线系统作为观测辐射的起源,但尚无法解释的是外部波激励。来源。对脉冲星表面和磁层进行了三维全电磁场内粒子模拟,以探索观测到的辐射的波形和极化特性。多脉冲特性与在较低的脉冲星“电离层”边界处存在波谐振器是一致的。

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