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Irregular Magnetic Fields in Interstellar Clouds and Variations in the Observed Circular Polarization of Spectral Lines

机译:星际云中的不规则磁场和光谱线圆极化的变化

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The strengths of magnetic fields in interstellar gas clouds are obtained through observations of the circular polarization of spectral line radiation. Irregularities in this magnetic field may be present because of turbulence, waves, or perhaps other causes, and may play an essential role in the structure and evolution of the gas clouds. To infer information about these irregularities from the observational data, we develop statistical relationships between the rms values of the irregular component of the magnetic field and spatial variations in the circular polarization of the spectral line radiation. The irregularities are characterized in analogy with descriptions of turbulence—by a sum of Fourier waves having a power spectrum with a slope similar to that of Kolmogorov turbulence. For comparison, we also perform computations in which turbulent magnetic and velocity fields from representative MHD simulations by others are utilized. Although the effects of the variations about the mean value of the magnetic field along the path of a ray tend to cancel, a significant residual effect in the polarization of the emergent radiation remains for typical values of the relevant parameters. A map of observed spectra of the 21 cm line toward Orion A is analyzed and the results are compared with our calculations in order to infer the strength of the irregular component of the magnetic field. The rms of the irregular component is found to be comparable in magnitude to the mean magnetic field within the cloud. Hence, the turbulent and Alfvén velocities should also be comparable.
机译:星际气云中的磁场强度是通过观察光谱线辐射的圆极化获得的。该磁场中的不规则性可能是由于湍流,波动或其他原因引起的,并且可能在气体云的结构和演化中起重要作用。为了从观测数据中推断出这些不规则性的信息,我们建立了磁场中不规则分量的均方根值与光谱线辐射的圆极化的空间变化之间的统计关系。不规则性的特征类似于对湍流的描述,其特征在于:傅立叶波的总和的功率谱的斜率类似于Kolmogorov湍流的斜率。为了进行比较,我们还进行了计算,其中利用了来自其他人的具有代表性的MHD模拟的湍流磁场和速度场。尽管关于沿射线路径的磁场平均值的变化的影响趋于抵消,但是对于相关参数的典型值,在出射辐射的偏振中仍然存在显着的残余效应。分析了朝向Orion A的21 cm线的观测光谱图,并将结果与​​我们的计算结果进行了比较,以推断磁场的不规则分量的强度。发现不规则分量的均方根在大小上可与云内的平均磁场相媲美。因此,湍流速度和Alfvén速度也应具有可比性。

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