论文标题

内部加速区域中火花运动的机理,以研究脉冲星中的子灌肠漂移

A Mechanism of Spark Motion in Inner Acceleration Region to Investigate Subpulse Drifting in Pulsars

论文作者

Basu, Rahul, Mitra, Dipanjan, Melikidze, George I.

论文摘要

由于在相对流的非平稳性等离子体流中的不稳定性,脉冲星的相干无线电发射是激发的,这是由恒星表面附近的内加速度区域(IAR)的火花放电产生的。许多详细的作品表明,IAR是一个部分筛选的间隙(PSG),该间隙(PSG)由非偶极磁场主导,离子从表面连续流出。子孔漂移的现象有望起源于$ \ mathbf {e} \ times \ times \ mathbf {b} $在psg中的火花漂移,那里的火花落后于脉冲星的旋转速度。详细的观察结果表明,各种子孔漂移行为,其中轮廓的不同组分中的子螺栓具有不同的相轨迹。但是,在轮廓的所有组成部分中,在测量误差中,漂流周期性被认为是恒定的。使用PSG中旋转速度后面的火花的概念以及表面非两极磁场的不同方向,我们在代表性的脉冲星样品中模拟了预期的单脉冲行为。我们的结果表明,使用这些简单的SPARK Dynamics在非偶极IAR中的这些简单的假设可以重现不同类型的漂移相行为。

Coherent radio emission in pulsars is excited due to instabilities in a relativistically streaming non-stationary plasma flow, which is generated from sparking discharges in the inner acceleration region (IAR) near the stellar surface. A number of detailed works have shown the IAR to be a partially screened gap (PSG) dominated by non-dipolar magnetic fields with continuous outflow of ions from the surface. The phenomenon of subpulse drifting is expected to originate due to variable $\mathbf{E}\times\mathbf{B}$ drift of the sparks in PSG, where the sparks lag behind corotation velocity of the pulsar. Detailed observations show a wide variety of subpulse drifting behaviour where subpulses in different components of the profile have different phase trajectories. But the drifting periodicity is seen to be constant, within measurement errors, across all components of the profile. Using the concept of sparks lagging behind corotation speed in PSG as well as the different orientations of the surface non-dipolar magnetic fields we have simulated the expected single pulse behaviour in a representative sample of pulsars. Our results show that the different types of drifting phase behaviour can be reproduced using these simple assumptions of spark dynamics in a non-dipolar IAR.

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