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首页> 外文期刊>The Astrophysical Journal. Letters >THE COMPLEX STRUCTURE OF MAGNETIC FIELD DISCONTINUITIES IN THE TURBULENT SOLAR WIND
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THE COMPLEX STRUCTURE OF MAGNETIC FIELD DISCONTINUITIES IN THE TURBULENT SOLAR WIND

机译:湍流太阳风中磁场不连续性的复杂结构

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摘要

Using high-resolution Cluster satellite observations and a multi-dimensional intermittency technique, we show that the magnetic discontinuities in the turbulent solar wind are connected through the spatial scales, going from proton down to electron scales. In some circumstances, their structure resembles the Harris equilibrium profile in plasmas. Observations are consistent with a scenario where many current layers develop in turbulence and where the outflow of these reconnection events are characterized by complex sub-proton networks of secondary islands, in a self-similar way. Although in the past these pictures have been speculated to be separately ubiquitous, through theories and simulations, the present work confirms that "reconnection in turbulence" and "turbulent reconnection" coexist in space plasmas.
机译:使用高分辨率簇卫星观测和多维间歇性技术,我们表明湍流太阳风中的磁不连续性通过空间秤连接,从质子下降到电子秤。 在某些情况下,它们的结构类似于等离子体中的哈里斯均衡轮廓。 观察结果与许多电流层在湍流中发育的场景以及这些重构事件的流出的特征在于,以自类似的方式,其特征在于,这些重新连接事件的流出。 虽然在过去这些图片中已经推测普遍存在,但通过理论和仿真,本作能够确认“湍流中的重新连接”和“湍流重新连接”在太空等离子体中共同。

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