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3D Study Of Magnetic Fields In NGC 6946

机译:NGC 6946磁场3D研究

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Recent advancements in both radio observatories and computing have opened a new regime of 3D observations. Not only do these instruments measure emission lines and radio continuum over much larger bandpasses, but they also simultaneously observe the polarized emission over the same large bandpasses with increased sensitivity. This "polarization spectrum" can be used to recover information about the 3D structure of magnetic fields in the universe. Our combined 3-20 cm observations of NGC 6946 taken with the Westerbork Synthesis Radio Telescope provide highly sensitive diagnostics of the internal depolarization across the galaxy. We use model fitting to determine likely mechanisms for depolarization in different regions of the galaxy, and glean information about the coherent and turbulent magnetic fields in NGC 6946. We produce Faraday dispersion maps that illustrate how we can probe different depths into the galaxy at different wavelengths and display new features of the line of sight magnetic field. This work is just a sample of the new 3D studies that are possible with upgraded and new radio instruments like the VLA, ATCA, and SKA.
机译:无线电观察者和计算的最新进步已经开辟了3D观测的新制度。这些仪器不仅可以测量排放线和无线电连续范围,而且还可以同时观察相同大带通物上的极化发射,具有增加的灵敏度。该“偏振光谱”可用于恢复有关宇宙中磁场的3D结构的信息。我们与Westerbork合成无线电望远镜采取的NGC 6946的3-20厘米观测结果为整个星系的内部去极化提供了高度敏感的诊断。我们使用模型拟合来确定银河系不同地区的去极化机制,以及关于NGC 6946中的相干和湍流磁场的收集信息。我们生产法拉第分散图,说明我们如何在不同波长下探测到银河系的不同深度如何并显示视线磁场线的新功能。这项工作只是新的3D研究的样本,可以使用升级和新的无线电仪器,如VLA,ATCA和SKA。

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