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Role of nonlinear localized structures and turbulence in magnetized plasma

机译:非线性局域结构和湍流在磁化等离子体中的作用

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摘要

In the present study, we have analyzed the field localization of kinetic Alfven wave (KAW) due to the presence of background density perturbation, which are assumed to be originated by the three dimensionally propagating low frequency KAW. These localized structures play an important role for energy transportation at smaller scales in the dispersion range of magnetic power spectrum. For the present model, governing dynamic equations of high frequency pump KAW and low frequency KAW has been derived by considering ponderomotive nonlinearity. Further, these coupled equations have been numerically solved to analyze the resulting localized structures of pump KAW and magnetic power spectrum in the magnetopause regime. Numerically calculated spectrum exhibits inertial range having spectral index of -3/2 followed by steeper scaling; this steepening in the turbulent spectrum is a signature of energy transportation from larger to smaller scales. In this way, the proposed mechanism, which is based on nonlinear wave-wave interaction, may be useful for understanding the particle acceleration and turbulence in magnetopause.
机译:在本研究中,我们已经分析了由于背景密度微扰而引起的动力学阿尔夫文波(KAW)的场局部化,假定它是由三维传播的低频KAW引起的。这些局部结构在磁功率谱的色散范围内对于较小规模的能量传输起着重要作用。对于本模型,考虑了动力非线性,推导了高频泵KAW和低频KAW的控制动力学方程。此外,已对这些耦合方程进行了数值求解,以分析由此产生的泵体KAW的局部结构和磁致绝热状态下的磁功率谱。数值计算的频谱显示出具有-3/2的频谱指数的惯性范围,然后进行更陡的缩放;湍流频谱的这种陡峭变化是能量传输从较大到较小规模的标志。这样,基于非线性波-波相互作用的所提出的机制对于理解磁更年期中的粒子加速度和湍流可能是有用的。

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