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Generation mechanism of Z-mode waves in the equatorial plasmasphere

机译:赤道等离子层中Z模波的产生机理

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In order to clarify the generation mechanism of Z-mode waves observed in the equatorial plasmasphere, the growth rate of Z-mode electromagnetic waves has been calculated under the higher-order cyclotron interaction process. Z-mode waves can interact with some tens of keV electrons with large pitch angles even in the dense cold background, and the amplitude is consistent with the Akebono plasma wave measurements. UHR and whistler mode waves are also excited by the same electron distribution, and this is also consistent with observations. The origin of these energetic electrons are identified as the ring current electrons injected into the plasmasphere by the intense large-scale electric field during geomagnetic storms, accelerated perpendicular to the ambient magnetic field and confined around the geomagnetic equator conserving the first and second adiabatic invariants. Since the intensity of Z-mode and UHR waves is associated with the development and decay of the ring current, ring current particles are most possible candidate for the free energy source of these waves
机译:为了阐明在赤道等离子层中观测到的Z模波的生成机理,已经在高阶回旋加速器相互作用过程中计算了Z模电磁波的增长率。即使在密集的寒冷背景下,Z型波也可以与数十个具有较大俯仰角的keV电子相互作用,并且振幅与Akebono等离子波测量结果一致。相同的电子分布也会激发UHR和惠斯勒模式波,这也与观察结果一致。这些高能电子的起源被识别为在地磁风暴期间由强大尺度电场注入等离子层的环流电子,该环流电子垂直于环境磁场而加速并局限于地磁赤道附近,从而保留了第一和第二绝热不变量。由于Z模式和UHR波的强度与环形电流的发展和衰减相关,因此环形电流粒子最有可能成为这些波的自由能源的候选者

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