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首页> 外文期刊>The Astrophysical journal >INTERFEROMETRIC MAPPING OF MAGNETIC FIELDS IN STAR-FORMING REGIONS. Ⅱ. NGC 2024 FIR 5
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INTERFEROMETRIC MAPPING OF MAGNETIC FIELDS IN STAR-FORMING REGIONS. Ⅱ. NGC 2024 FIR 5

机译:恒星形成区域中磁场的干涉法制图。 Ⅱ。 NGC 2024杉木5

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摘要

We present the first interferometric polarization maps of the NGC 2024 FIR 5 molecular core, obtained with the BIMA array at approximately 2″ resolution. We measure an average position angle of ― 60° +- 6° in the main core of FIR 5 and 54° +- 9? in the eastern wing of FIR 5. The morphology of the polarization angles in the main core of FIR 5 suggests that the field lines are parabolic, with a symmetry axis approximately parallel to the major axis of the putative disk in FIR 5, which is consistent with the theoretical scenario that the gravitational collapse pulled the field lines into an hourglass shape. The polarization percentage decreases toward regions with high intensity and close to the center of the core, suggesting that the dust alignment efficiency may decrease at high density. The plane-of-sky field strength can be estimated with the modified Chandrasekhar-Fermi formula, and the small dispersion of the polarization angles in FIR 5 suggests that the magnetic field is strong (approx>2 mG) and perhaps dominates the turbulent motions in the core.
机译:我们提出了NGC 2024 FIR 5分子核的第一个干涉偏振图,它是用BIMA阵列以大约2英寸的分辨率获得的。我们在FIR 5的主磁芯中测量的平均位置角为― 60°±6°,而在54°±9°?在FIR 5的东翼中从理论上讲,重力坍塌将磁力线拉成沙漏形。极化百分比朝着高强度区域并靠近纤芯中心的方向减小,这表明在高密度下粉尘排列效率可能会降低。可以使用修改后的Chandrasekhar-Fermi公式估算天空平面的场强,并且FIR 5中极化角的较小色散表明磁场很强(大约2 mG),并且可能主导了湍流。核心。

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