论文标题

毫秒Pulsar PSR J0030+0451的多极磁场

The Multipolar Magnetic Field of Millisecond Pulsar PSR J0030+0451

论文作者

Kalapotharakos, Constantinos, Wadiasingh, Zorawar, Harding, Alice K., Kazanas, Demosthenes

论文摘要

旨在限制中子星质量和半径的Pulsar PSR J0030+0451的X射线波形的建模具有明显的非二极极磁场的表面热点(磁性极盖)。为此,我们研究了包含静态真空场和无力的全局磁圈模型的磁场构型,包括抵消偶极和四极组件。考虑到Miller等人提供的紧凑性和观察者角度值。 (2019)和Riley等。 (2019年),我们将测量器从观察者平面到极盖进行计算,以计算所得的X射线光曲线。我们通过马尔可夫链蒙特卡洛技术探索详细的磁场配置,可以重现观察到的X射线光曲线,并发现了脱整体,即多样化的磁场配置,可以为X射线波形提供足够的描述。在获得无力的场结构后,我们在Kalapotharakos等人之后计算了相应的同步伽马射线光曲线。 (2014年)我们将这些与Fermi-Lat获得的内容进行了比较,以提供与X射线和伽马射线数据一致的模型,从而进一步限制了多极场参数。这种方法的一个重要方面是对同步X-和伽马射线光曲线之间的相对相的正确计算。我们最后讨论了我们的研究的广泛含义。

Modeling of the NICER X-ray waveform of the pulsar PSR J0030+0451, aimed to constrain the neutron star mass and radius, has inferred surface hot-spots (the magnetic polar caps) that imply significantly non-dipolar magnetic fields. To this end, we investigate magnetic field configurations that comprise offset dipole plus quadrupole components using static vacuum field and force-free global magnetosphere models. Taking into account the compactness and observer angle values provided by Miller et al. (2019) and Riley et al. (2019), we compute geodesics from the observer plane to the polar caps to compute the resulting X-ray light curve. We explore, through Markov chain Monte Carlo techniques, the detailed magnetic field configurations that can reproduce the observed X-ray light curve and have discovered degeneracies, i.e., diverse field configurations, which can provide sufficient descriptions to the NICER X-ray waveforms. Having obtained the force-free field structures, we then compute the corresponding synchronous gamma-ray light curves following Kalapotharakos et al. (2014) these we compare to those obtained by Fermi-LAT, to provide models consistent with both the X-ray and the gamma-ray data, thereby restricting further the multipole field parameters. An essential aspect of this approach is the proper computation of the relative phase between the synchronous X- and gamma-ray light curves. We conclude with a discussion of the broader implications of our study.

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