首页> 外文期刊>The Astrophysical journal >ROTATION MEASURES OF EXTRAGALACTIC SOURCES BEHIND THE SOUTHERN GALACTIC PLANE: NEW INSIGHTS INTO THE LARGE-SCALE MAGNETIC FIELD OF THE INNER MILKY WAY
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ROTATION MEASURES OF EXTRAGALACTIC SOURCES BEHIND THE SOUTHERN GALACTIC PLANE: NEW INSIGHTS INTO THE LARGE-SCALE MAGNETIC FIELD OF THE INNER MILKY WAY

机译:南部银河系平面外的银河系外源旋转措施:对内银河系大型磁场的新认识

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We present new Faraday rotation measures (RMs) for 148 extragalactic radio sources behind the southern Galactic plane (253° ≤ l ≤ 356°, ∣b∣ ≤ 1.5°), and use these data in combination with published data to probe the large-scale structure of the Milky Way's magnetic field. We show that the magnitudes of these RMs oscillate with longitude in a manner that correlates with the locations of the Galactic spiral arms. The observed pattern in RMs requires the presence of at least one large-scale magnetic reversal in the fourth Galactic quadrant, located between the Sagittarius-Carina and Scutum-Crux spiral arms. To quantitatively compare our measurements to other recent studies, we consider all available extragalactic and pulsar RMs in the region we have surveyed, and jointly fit these data to simple models in which the large-scale field follows the spiral arms. In the best-fitting model, the magnetic field in the fourth Galactic quadrant is directed clockwise in the Sagittarius-Carina spiral arm (as viewed from the north Galactic pole), but is oriented counterclockwise in the Scutum-Crux arm. This contrasts with recent analyses of pulsar RMs alone, in which the fourth-quadrant field was presumed to be directed counterclockwise in the Sagittarius-Carina arm. Also in contrast to recent pulsar RM studies, our joint modeling of pulsar and extragalactic RMs demonstrates that large numbers of large-scale magnetic field reversals are not required to account for observations.
机译:我们为南部银河平面(253°≤l≤356°,∣b∣≤1.5°)后的148个银河外无线电源提出了新的法拉第旋转测量(RM),并将这些数据与已发布的数据结合使用来探测较大的银河系磁场的尺度结构。我们显示这些RM的幅度以与银河系旋臂的位置相关的方式随着经度振荡。在RM中观察到的模式要求在射手座-Carina和Scutum-Crux螺旋臂之间的第四个银河象限中至少存在一个大型磁逆转。为了将我们的测量结果与其他最近的研究进行定量比较,我们考虑了我们调查区域内所有可用的河外RM和脉冲星RM,并将这些数据与简单模型进行了拟合,在该模型中,大尺度场跟随螺旋臂。在最佳拟合模型中,第四个银河象限中的磁场在人马座-凯里纳螺旋臂中(从北银河极看)是顺时针方向,而在Scutum-Crux臂中是逆时针方向。这与仅对脉冲星RM的最新分析形成对比,在脉冲分析中,第四象限场被认为是在人马座-箭臂中逆时针方向。同样与最近的脉冲星RM研究相反,我们对脉冲星RM和银河外RM的联合模型表明,不需要大量的大范围磁场反转来解释观测。

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