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Submillimeter Array Observations of Magnetic Fields in Star Forming Regions

机译:Subsillimeter阵列磁场磁场的观察星形成形区域

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There have been a number of theoretical and computational models which state that magnetic fields play an important role in the process of star formation. Competing theories instead postulate that it is turbulence which is dominant and magnetic fields are weak. The recent installation of a polarimetry system at the Submillimeter Array (SMA) has enabled us to conduct observations that could potentially distinguish between the two theories. Some of the nearby low mass star forming regions show hour-glass shaped magnetic field structures that are consistent with theoretical models in which the magnetic field plays a dominant role. However, there are other similar regions where no significant polarization is detected. Future polarimetry observations made by the Submillimeter Array should be able to increase the sample of observed regions. These measurements will allow us to address observationally the important question of the role of magnetic fields and/or turbulence in the process of star formation.
机译:已经存在许多理论和计算模型,该模型在磁场在星形形成过程中起重要作用。竞争理论而言,假设它是主导和磁场的湍流弱。最近在Subsillimeter阵列(SMA)上安装偏振距系统的安装已经使我们能够进行可能区分两个理论的观察结果。一些附近的低质量星形成形区域显示了与理论模型一致的时空玻璃形磁场结构,其中磁场起到主导作用。然而,还有其他类似的区域,其中没有检测到显着的极化。由亚倍数仪阵列制作的未来偏振距离观察应该能够增加观察区域的样本。这些测量将使我们能够在磁场和/或湍流中解决明星形成过程中的重要问题。

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