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MAGMO: Mapping the Galactic Magnetic field through OH masers

机译:Magmo:通过哦涂布器映射银河系磁场

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We are undertaking a project (MAGMO) to examine large-scale magnetic fields pervading regions of high-mass star formation. The project will test if the orientations of weak large-scale magnetic fields can be maintained in the contraction (and field amplification) to the high densities encountered in high-mass star forming regions. This will be achieved through correlating targeted observations of ground-state hydroxyl (OH) maser emission towards hundreds of sites of high-mass star formation spread throughout the spiral arms of the Milky Way. Through the Zeeman splitting of the OH maser emission these observations will determine the strength and orientation of the in-situ magnetic field. The completion of the southern hemisphere Methanol Multibeam survey has provided an abundance of targets for ground-state OH maser observations, approximately 1000 sites of high-mass star formation. With this sample, much larger and more homogeneous than previously available, we will have the statistics necessary to outweigh random fluctuations and observe an underlying Galactic magnetic field if it exists. We presented details of the overall progress of the project illustrated by the results of a pilot sample of sources towards the Carina-Sagittarius spiral arm tangent, where a coherent field is implied.
机译:我们正在进行一个项目(Magmo)来检查大规模磁场的大规模磁场弥漫的高质量明星形成区域。该项目将测试弱大规模磁场的方向是否可以保持在高质量星形成区域遇到的高密度的收缩(和场放大)中。这将通过将靶向羟基(OH)蒙皮发射的靶向观察结果与在银河系的整个螺旋臂的整个螺旋臂上展开来实现。通过孤独的分裂哦蒙皮发射,这些观察结果将确定原位磁场的强度和取向。南半球甲醇多博调查的完成提供了对地态oh蒙皮观察的丰富目标,大约1000个高质量星形形成。通过这种样品,比以前可用的更大更大,更均匀,我们将具有超过随机波动所需的统计数据,并且如果存在,则观察下面的银河磁场。我们介绍了通过朝向Carina-Sagittarius螺旋臂切线的试验结果的结果所示的项目的整体进展细节,其中暗示了相干领域。

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