论文标题

Swift J1818.0 $ - $ 1607的动态磁层

The dynamic magnetosphere of Swift J1818.0$-$1607

论文作者

Lower, Marcus E., Johnston, Simon, Shannon, Ryan M., Bailes, Matthew, Camilo, Fernando

论文摘要

在旋转驱动的脉冲星人群中很少看到无线电磁铁显示出多种无线电脉冲现象学。来自这些物体的无线电脉冲的光谱法具有对磁性无线电发射机制的磁性拓扑的约束。在这里,我们报告了八次观察到八个月内使用Parkes Ultra-Wideband低接收器的Magnetar Swift J1818.0 $ - $ 1607,在5个月内覆盖了0.7至4 GHz的频率范围。在此期间,磁铁表现出显着的时间剖面演变,包括具有倒置频谱的新剖面组件的出现,两种不同类型的无线电发射模式切换,在两个单独的观察结果中检测到,以及多个极化模式的外观和消失。这些各种现象可能是由于磁层内血浆含量和电流的持续重新配置的结果。几何形状拟合线性极化的位置角度表明我们正在以$ \ sim $ 99 $^{\ circ} $的角度查看磁体,其磁性和旋转轴被$ \ sim $ 112 $^{\ circ} $错误地对齐。在进行这些拟合时,我们发现位置角摆动在MJD 59062上的方向颠倒了,与15天和12天后进行的观测值相比。我们推测这种现象可能是证据的证据,来自该磁场的无线电发射起源于与两个通过冠状环连接的共同置换磁极相关的磁场线。

Radio-loud magnetars display a wide variety of radio-pulse phenomenology seldom seen among the population of rotation-powered pulsars. Spectropolarimetry of the radio pulses from these objects has the potential to place constraints on their magnetic topology and unveil clues about the magnetar radio emission mechanism. Here we report on eight observations of the magnetar Swift J1818.0$-$1607 taken with the Parkes Ultra-Wideband Low receiver covering a wide frequency range from 0.7 to 4 GHz over a period of 5 months. The magnetar exhibits significant temporal profile evolution over this period, including the emergence of a new profile component with an inverted spectrum, two distinct types of radio emission mode switching, detected during two separate observations, and the appearance and disappearance of multiple polarization modes. These various phenomena are likely a result of ongoing reconfiguration of the plasma content and electric currents within the magnetosphere. Geometric fits to the linearly polarized position angle indicate we are viewing the magnetar at an angle of $\sim$99$^{\circ}$ from the spin axis, and its magnetic and rotation axes are misaligned by $\sim$112$^{\circ}$. While conducting these fits, we found the position angle swing had reversed direction on MJD 59062 compared to observations taken 15 days earlier and 12 days later. We speculate this phenomena may be evidence the radio emission from this magnetar originates from magnetic field lines associated with two co-located magnetic poles that are connected by a coronal loop.

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