{"title":"C","authors":"Osman Demirci, Sezai Taskin, Burcu Acar, Ali Turan","doi":"10.2307/j.ctv14jx8r2.7","DOIUrl":null,"url":null,"abstract":"Solar wind observations and magnetohydrodynamic (MHD) simulations are used to probe the nature of turbulence heating. In particular, the electron heat flux, electron temperature, and ion temperature in the solar wind are studied using ACE and Wind data. These heating diagnostics are also compared with MHD simulation estimates of the local dissipation density. Coherent structures, which are sources of inhomogeneity and intermittency in MHD turbulence, are found to be associated with enhancements in every heating-related diagnostic. This supports the hypothesis that significant inhomogeneous heating occurs in the solar wind, connected with current sheets that are dynamically generated by MHD turbulence. Indeed, a subset of these coherent current sheets might be candidates for magnetic reconnection. However, the specific kinetic mechanisms that heat and accelerate particles within these structures require further study.","PeriodicalId":443310,"journal":{"name":"Diccionario de provincialismos y barbarismos del Valle del Cauca y Quechuismos usados en Colombia","volume":null,"pages":null},"PeriodicalIF":0.0000,"publicationDate":"2018-07-05","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Diccionario de provincialismos y barbarismos del Valle del Cauca y Quechuismos usados en Colombia","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.2307/j.ctv14jx8r2.7","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
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Abstract

Solar wind observations and magnetohydrodynamic (MHD) simulations are used to probe the nature of turbulence heating. In particular, the electron heat flux, electron temperature, and ion temperature in the solar wind are studied using ACE and Wind data. These heating diagnostics are also compared with MHD simulation estimates of the local dissipation density. Coherent structures, which are sources of inhomogeneity and intermittency in MHD turbulence, are found to be associated with enhancements in every heating-related diagnostic. This supports the hypothesis that significant inhomogeneous heating occurs in the solar wind, connected with current sheets that are dynamically generated by MHD turbulence. Indeed, a subset of these coherent current sheets might be candidates for magnetic reconnection. However, the specific kinetic mechanisms that heat and accelerate particles within these structures require further study.
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C
利用太阳风观测和磁流体动力学(MHD)模拟来探测湍流加热的本质。利用ACE和wind数据研究了太阳风中的电子热流密度、电子温度和离子温度。这些加热诊断还与MHD模拟估计的局部耗散密度进行了比较。相干结构是MHD湍流不均匀性和间歇性的来源,在每一个与加热相关的诊断中都被发现与增强有关。这支持了一个假设,即太阳风中发生了显著的不均匀加热,与MHD湍流动态产生的电流片有关。事实上,这些相干电流片的一个子集可能是磁重联的候选者。然而,在这些结构中加热和加速粒子的具体动力学机制需要进一步研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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