论文标题

预进pulsar PSR J1906+0746的无线电极化模拟

Simulations of the radio polarization of a precessing pulsar PSR J1906+0746

论文作者

Galishnikova, A. K., Philippov, A. A., Beskin, V. S.

论文摘要

最近构建的无线电波传播理论在脉冲星磁层中概述了无线电曲线和极化形成的一般方面。它使我们能够描述平均剖面的一般特性,例如线性极化的位置角($ pa $),以及脉冲星磁层中对创建区域现实结构的圆极化。在这项工作中,我们介绍了无线电波传播理论的应用于Pulsar PSR J1906+0746的无线电观察结果。该脉冲星特别有趣,因为对二进制系统中相对论自旋细分的观察使我们能够在其几何形状上施加强大的约束。因为它是一个几乎正交的旋转器,所以脉冲星使我们能够观察两个磁极。如我们所示,这对于测试无线电波传播理论并获得对磁层等离子体参数的约束至关重要。我们的结果表明,等离子参数在质量上与极性帽放电中的配对血浆产生理论一致。具体来说,对于PSR J1906+0746,我们限制了等离子体多重性$λ\ sim 10^3 $和辅助等离子体$γ\ sim $的lorentz-factor几百。

The recently constructed theory of radio wave propagation in the pulsar magnetosphere outlines the general aspects of the radio light curve and polarization formation. It allows us to describe general properties of mean profiles, such as the position angle ($PA$) of the linear polarization, and the circular polarization for the realistic structure of the pair creation region in the pulsar magnetosphere. In this work, we present an application of the radio wave propagation theory to the radio observations of pulsar PSR J1906+0746. This pulsar is particularly interesting because observations of relativistic spin-precession in a binary system allows us to put strong constraints on its geometry. Because it is an almost orthogonal rotator, the pulsar allows us to observe both magnetic poles; as we show, this is crucial for testing the theory of radio wave propagation and obtaining constraints on the parameters of magnetospheric plasma. Our results show that plasma parameters are qualitatively consistent with theories of pair plasma production in polar cap discharges. Specifically, for PSR J1906+0746, we constrain the plasma multiplicity $λ\sim 10^3$ and the Lorentz-factor of secondary plasma $γ\sim $ a few hundred.

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