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RELATIVISTIC EFFECTS AND POLARIZATION IN THREE HIGH-ENERGY PULSAR MODELS

机译:三种高能脉冲模型的相对论效应和极化

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摘要

We present the influence of the special relativistic effects of aberration and light-travel time delay on pulsar high-energy light curves and polarization characteristics predicted by three models: the two-pole caustic model, the outer gap model, and the polar cap model. Position angle curves and degree of polarization are calculated for the models and compared with the optical data on the Crab pulsar. The relative positions of peaks in gamma-ray and radio light curves are discussed in detail for the models. We find that the two-pole caustic model can qualitatively reproduce the optical polarization characteristics of the Crab pulsar: fast swings of the position angle and minima in polarization degree, associated with both peaks. The anticorrelation between the observed flux and the polarization degree (observed in the optical band also for B0656+14) naturally results from the caustic nature of the peaks, which are produced in the model because of the superposition of radiation from many different altitudes, i.e., polarized at different angles. The two-pole caustic model also provides an acceptable interpretation of the main features in the Crab's radio profile. Neither the outer gap model nor the polar cap model is able to reproduce the optical polarization data on the Crab. Although the outer gap model is very successful in reproducing the relative positions of gamma-ray and radio peaks in pulse profiles, it can reproduce the high-energy light curves only when photon emission from regions very close to the light cylinder is included.
机译:我们介绍了像差和光旅行时间延迟的相对论效应对脉冲星高能光曲线和偏振特性的影响,该模型由两极腐蚀模型,外间隙模型和极帽模型三种模型预测。计算模型的位置角曲线和偏振度,并与Crab脉冲星上的光学数据进行比较。针对该模型详细讨论了伽玛射线和无线电波曲线中峰的相对位置。我们发现,两极苛性碱模型可以定性地再现Crab脉冲星的光学偏振特性:位置角的快速摆动和偏振度的最小值,与两个峰值相关。观测到的通量和偏振度之间的反相关性(对于B0656 + 14在光带中也观察到)自然是由峰的苛性引起的,这些峰在模型中是由于来自许多不同高度的辐射叠加而产生的,即,以不同角度极化。两极苛性碱模型还提供了对Crab无线电剖面中主要特征的可接受解释。外部间隙模型和极地帽模型都不能在Crab上重现光学偏振数据。尽管外间隙模型在复制脉冲轮廓中的伽马射线和无线电波峰的相对位置方面非常成功,但只有在包括从非常接近圆柱体的区域发出的光子发射时,它才能复制高能光曲线。

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