Synchro-curvature description of γ-ray light curves and spectra of pulsars: global properties

Daniel Íñiguez-Pascual, Diego F. Torres, Daniele Viganò
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Abstract

This work presents a methodological approach to generate realistic γ-ray light curves of pulsars, resembling reasonably well the observational ones observed by the Fermi-Large Area Telescope instrument, fitting at the same time their high-energy spectra. The theoretical light curves are obtained from a spectral and geometrical model of the synchro-curvature emission. Despite our model relies on a few effective physical parameters, the synthetic light curves present the same main features observed in the observational γ-ray light curve zoo, such as the different shapes, variety in the number of peaks, and a diversity of peak widths. The morphological features of the light curves allows us to statistically compare the observed properties. In particular, we find that the proportion on the number of peaks found in our synthetic light curves is in agreement with the observational one provided by the third Fermi-LAT pulsar catalog. We also found that the detection probability due to beaming is much higher for orthogonal rotators (approaching 100%) than for small inclination angles (less than 20 %). The small variation on the synthetic skymaps generated for different pulsars indicates that the geometry dominates over timing and spectral properties in shaping the gamma-ray light curves. This means that geometrical parameters like the inclination angle can be in principle constrained by gamma-ray data alone independently on the specific properties of a pulsar. At the same time, we find that γ-ray spectra seen by different observers can slightly differ, opening the door to constraining the viewing angle of a particular pulsar.
脉冲星γ射线光曲线和光谱的同步曲率描述:全局特性
这项工作提出了一种生成脉冲星逼真γ射线光曲线的方法,与费米大面积望远镜观测到的光曲线相当相似,同时还拟合了脉冲星的高能光谱。理论光曲线是从同步曲率发射的光谱和几何模型中获得的。尽管我们的模型依赖于几个有效的物理参数,但合成光曲线呈现出与观测γ射线光曲线动物园中观测到的相同的主要特征,如不同的形状、峰值数量的多样性以及峰值宽度的多样性。根据光曲线的形态特征,我们可以对观测到的特性进行统计比较。特别是,我们发现在合成光曲线中发现的峰值数量比例与第三期费米-LAT 脉冲星目录提供的观测结果一致。我们还发现,对于正交旋转星(接近 100%)来说,光束的探测概率要比小倾角(低于 20%)的探测概率高得多。为不同脉冲星生成的合成天体图差异很小,这表明在形成伽马射线光曲线时,几何参数比时间和光谱特性更重要。这就意味着,像倾角这样的几何参数原则上可以只通过伽马射线数据来约束,而不受脉冲星具体特性的影响。同时,我们还发现不同观测者看到的伽马射线光谱会略有不同,这就为限制特定脉冲星的观测角度打开了大门。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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