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首页> 外文期刊>The Astrophysical journal >THE OUTER SCALE OF TURBULENCE IN THE MAGNETOIONIZED GALACTIC INTERSTELLAR MEDIUM
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THE OUTER SCALE OF TURBULENCE IN THE MAGNETOIONIZED GALACTIC INTERSTELLAR MEDIUM

机译:磁电离星际中间介质中湍流的外尺度

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摘要

We analyze Faraday rotation and depolarization of extragalactic radio point sources in the direction of the inner Galactic plane to determine the outer scale and amplitude of the rotation measure power spectrum. Structure functions of rotation measure show lower amplitudes than expected when extrapolating electron density fluctuations to large scales assuming a Kolmogorov spectral index. This implies an outer scale of those fluctuations on the order of a parsec, much smaller than commonly assumed. Analysis of the partial depolarization of point sources independently indicates a small outer scale of a Kolmogorov power spectrum. In the Galaxy's spiral arms, no rotation measure fluctuations on scales above a few parsecs are measured. In the interarm regions fluctuations on larger scales than in spiral arms are present, and show power-law behavior with a shallow spectrum. These results suggest that in the spiral arms stellar sources such as stellar winds or protostellar outflows dominate the energy injection for the turbulent energy cascade on parsec scales, while in the interarm regions supernova and superbubble explosions are the main sources of energy on scales on the order of 100 pc.
机译:我们在银河内部平面的方向上分析法拉第旋转和银河外无线电点源的去极化,以确定旋转测量功率谱的外部尺度和幅度。假设Kolmogorov光谱指数将电子密度波动外推到较大比例时,旋转量度的结构函数显示出比预期低的幅度。这意味着这些波动的外部尺度约为一秒差距,比通常假定的要小得多。对点源的部分去极化的分析独立地表明,Kolmogorov功率谱的外部尺度较小。在银河系的旋臂中,没有测量过几秒差距以上尺度的旋转测量波动。在臂间区域中,存在比螺旋臂更大的尺度波动,并表现出具有较浅谱的幂律行为。这些结果表明,在螺旋臂中,恒星风或原恒星流出等恒星源占了对等分尺度湍流能量级联的能量注入,而在臂间区域,超新星和超气泡爆炸是按量级尺度的主要能量来源。 100个

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