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首页> 外文期刊>The Astrophysical Journal. Letters >On intermittent turbulence heating of the solar wind: Differences between tangential and rotational discontinuities
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On intermittent turbulence heating of the solar wind: Differences between tangential and rotational discontinuities

机译:关于太阳风的间歇湍流加热:切向和旋转不连续之间的差异

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The intermittent structures in solar wind turbulence, studied by using measurements from the WIND spacecraft, are identified as being mostly rotational discontinuities (RDs) and rarely tangential discontinuities (TDs) based on the technique described by Smith. Only TD-associated current sheets (TCSs) are found to be accompanied with strong local heating of the solar wind plasma. Statistical results show that the TCSs have a distinct tendency to be associated with local enhancements of the proton temperature, density, and plasma beta, and a local decrease of magnetic field magnitude. Conversely, for RDs, our statistical results do not reveal convincing heating effects. These results confirm the notion that dissipation of solar wind turbulence can take place in intermittent or locally isolated small-scale regions which correspond to TCSs. The possibility of heating associated with RDs is discussed.
机译:根据史密斯描述的技术,通过使用WIND航天器的测量值研究的太阳风湍流的间歇结构被确定为主要是旋转不连续(RD),很少是切向不连续(TD)。发现只有与TD相关的电流表(TCS)伴随着强烈的太阳风等离子体局部加热。统计结果表明,TCS具有明显的趋势,与质子温度,密度和血浆β的局部升高以及磁场强度的局部降低相关。相反,对于RD,我们的统计结果并未显示令人信服的热效应。这些结果证实了这样一种观念,即太阳风湍流的消散可以发生在与TCS相对应的间歇性或局部隔离的小尺度区域中。讨论了与RD相关的加热的可能性。

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