论文标题

银河系磁盘和光环的磁场结构在法拉第旋转

Structure in the Magnetic Field of the Milky Way Disk and Halo traced by Faraday Rotation

论文作者

Dickey, John M., West, Jennifer, Thomson, Alec J. M., Landecker, T. L., Bracco, A., Carretti, E., Han, J. L., Hill, A. S., Ma, Y. K., Mao, S. A., Ordog, A., Brown, Jo-Anne C., Douglas, K. A., Erceg, A., Jelic, V., Kothes, R., Wolleben, M.

论文摘要

银河系的电离介质和光环的电离介质中的磁场在线性极化无线电发射上施加了法拉第旋转。我们比较了映射银河法拉第旋转的两项调查,其中一项显示了通过银河系看到的旋转量度(摘自Hutschenreuter等人2022),另一个显示了从全球磁铁含量媒介介质调查的弥漫性银河系同步介质发射的法拉第沿岸。比较5DEG x 10DEG垃圾箱中的两个数据集显示了中间纬度的良好一致性,10 <| b | <50度,在较低和较高纬度上之间的相关性很小。在他们同意的情况下,两个示踪剂都表现出清晰的模式,这是银河经度的函数:在北半球,强烈的罪(2 x经度)模式,在南半球,罪(经度 + PI)模式。高度上方或下方的脉冲星| z | > 300 PC在其旋转措施中显示出相似的经度依赖性。附近的非热结构显示旋转测量阴影,就像猎户座 - 埃里达努斯超级泡沫一样。我们描述了可以解释两个半球中观察到的模式的发电机模型家族。我们建议,在太阳能圆圈内越过几百个PC的田间逆转可能会随着银河半径的增加而转移到正Z,以解释北半球的罪(2xlongitude)模式。相关性表明,来自乳层外源的旋转度量是弥漫发射的相应旋转度量的一到两倍,这意味着沿着某些视线沿线,尤其是在南半球沿线的法拉第复杂性。

Magnetic fields in the ionized medium of the disk and halo of the Milky Way impose Faraday rotation on linearly polarized radio emission. We compare two surveys mapping the Galactic Faraday rotation, one showing the rotation measures of extragalactic sources seen through the Galaxy (from Hutschenreuter et al 2022), and one showing the Faraday depth of the diffuse Galactic synchrotron emission from the Global Magneto-Ionic Medium Survey. Comparing the two data sets in 5deg x 10deg bins shows good agreement at intermediate latitudes, 10 < |b| < 50 deg, and little correlation between them at lower and higher latitudes. Where they agree, both tracers show clear patterns as a function of Galactic longitude: in the Northern Hemisphere a strong sin(2 x longitude) pattern, and in the Southern hemisphere a sin(longitude + pi) pattern. Pulsars with height above or below the plane |z| > 300 pc show similar longitude dependence in their rotation measures. Nearby non-thermal structures show rotation measure shadows as does the Orion-Eridanus superbubble. We describe families of dynamo models that could explain the observed patterns in the two hemispheres. We suggest that a field reversal, known to cross the plane a few hundred pc inside the solar circle, could shift to positive z with increasing Galactic radius to explain the sin(2xlongitude) pattern in the Northern Hemisphere. Correlation shows that rotation measures from extragalactic sources are one to two times the corresponding rotation measure of the diffuse emission, implying Faraday complexity along some lines of sight, especially in the Southern hemisphere.

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