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首页> 外文期刊>The Astrophysical journal >Magnetic Field Structure in Spheroidal Star-forming Clouds. II. Estimating Field Structure from Observed Maps
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Magnetic Field Structure in Spheroidal Star-forming Clouds. II. Estimating Field Structure from Observed Maps

机译:球形恒星形成云中的磁场结构。 II。 估计观察到地图的场结构

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This paper presents models to estimate the structure of density and magnetic field strength in spheroidal condensations from maps of their column density and their polarization of magnetically aligned dust grains. The density model is obtained by fitting a column density map with an embedded p ?=?2 Plummer spheroid of any aspect ratio and inclination. The magnetic properties are based on the density model, the Davis–Chandrasekhar–Fermi (DCF) model of Alfvénic fluctuations, and the spheroid flux freezing (SFF) model of mass and flux conservation in Paper I. The field strength model has the resolution of the column density map, which is finer than the resolution of the DCF estimate of field strength. The models are applied to ALMA observations of the envelope of the protostar BHR 71 IRS1. Column density fits give the density model from (2.0?±?0.4)?×?10~(5) to (7?±?1)?×?10~(7) cm~(?3). The density model predicts the field directions map, which fits the polarization map best within 1100 au, with standard deviation of angle differences of 17°. In this region, the DCF mean field strength is 0.7?±?0.2 mG, and the envelope mass is supercritical, with a ratio of mass to magnetic critical mass of 1.5?±?0.4. The SFF field strength profile scales with the DCF field strength from 60?±?10 μ G to 3?±?1 mG. The spatial resolution of the SFF field strength estimate is finer than the DCF resolution by a factor of ~7, and the peak SFF field strength exceeds the DCF field strength by a factor of ~4.
机译:本文提出了模型来估计从其柱密度的地图和磁对准粉尘颗粒的柱状凝聚中的球形凝聚的密度和磁场强度的结构。通过用嵌入式pα浓度图拟合柱密度图来获得密度模型。磁性特性基于密度模型,达夫斯 - Chandrasekhar-Fermi(DCF)模型的Alfvénic波动,以及纸张的质量和磁通保存的球体沟槽(SFF)模型I.场强模型具有分辨率柱密度图,其比现场强度的DCF估计的分辨率更精细。该模型应用于抗议情况BHR 71 IRS1的封套的ALMA观察。柱密度配合从(2.0≤x≤0.4)给出密度模型?×10〜(5)到(7?±1)?×10〜(7)cm〜(?3)。密度模型预测现场方向图,其适合于1100 AU的极​​化图,其角度差为17°的标准偏差。在该区域中,DCF平均场强度为0.7?±0.2mg,并且包络质量是超临界的超临界,与磁性临界质量为1.5?±0.4。 SFF场强度剖面尺度从60?±10℃的DCF场强度缩放到3?±1毫克。 SFF场强度估计的空间分辨率比DCF分辨率更精细,通过〜7的因子,峰值SFF场强度超过DCF场强度〜4的倍数。

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