论文标题
在冠状冠状环的脚步处产生低频动力波
Generation of low-frequency kinetic waves at the footpoints of pre-flare coronal loops
论文作者
论文摘要
在这项研究中,我们讨论了可以在固定前的状态下考虑血浆的情况下的中低频柔性脚关节中低频等离子体波的激发。据显示,在太阳大气的已知半经验模型中,只有Val(F)模型以及一组特定的基本等离子体参数以及电场和磁场的振幅支持低频波浪不稳定性的产生。我们的结果表明,可以使用动力学alfven和动力学离子声波的相互作用来预测活性区域中耀斑过程的发作,这是衍生分散方程的溶液。 VAL(F)模型允许在上述不稳定性的主要来源可能是由于存在空间不均匀性而导致的,并且漂移等离子体运动时的情况。我们还表明,在具有纯粹的库仑电导率的等离子体和小型伯恩斯坦湍流的情况下,可以同时出现动力学阿尔芬和动力离子声波的产生。还讨论了由于磁场强度值相对较低的血浆中低阈值不稳定而引起的小振幅动力波的激发。
In this study we discuss the excitation of low frequency plasma waves in the lower-middle chromosphere region of loop footpoints for the case when the plasma can be considered in a pre-flare state. It is shown, that among the known semi-empirical models of the solar atmosphere, only the VAL (F) model together with a particular set of basic plasma parameters and amplitudes of the electric and magnetic fields supports generation of low frequency wave instability. Our results show that it is possible to predict the onset of the flare process in the active region by using the interaction of kinetic Alfven and kinetic ion-acoustic waves, which are solutions of the derived dispersion equation. The VAL (F) model allows situations when the main source of the aforementioned instability can be a sub-Dreicer electric field and drift plasma movements due to the presence of spatial inhomogeneities. We also show that the generation of kinetic Alfven and kinetic ion-acoustic waves can occur both, in plasma with a purely Coulomb conductivity and in the presence of small-scale Bernstein turbulence. The excitation of the small amplitude kinetic waves due to development of low threshold instability in plasma with relatively low values of the magnetic field strength is also discussed.