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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Ultralow‐frequency modulation of whistler‐mode wave growth
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Ultralow‐frequency modulation of whistler‐mode wave growth

机译:超低量调频惠斯勒的模式波的增长

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Measurements from ground‐based magnetometers and riometers at auroral latitudes have demonstrated that energetic (~30–300 keV) electron precipitation can be modulated in the presence of magnetic field oscillations at ultralow frequencies. It has previously been proposed that an ultralow‐frequency (ULF) wave would modulate field and plasma properties near the equatorial plane, thus modifying the growth rates of whistler‐mode waves. In turn, the resulting whistler‐mode waves would mediate the pitch angle scattering of electrons resulting in ionospheric precipitation. In this paper, we investigate this hypothesis by quantifying the changes to the linear growth rate expected due to a slow change in the local magnetic field strength for parameters typical of the equatorial region around 6.6R_E radial distance. To constrain our study, we determine the largest possible ULF wave amplitudes from measurements of the magnetic field at geosynchronous orbit. Using nearly ten years of observations from two satellites, we demonstrate that the variation in magnetic field strength due to oscillations at 2 mHz does not exceed ±10% of the background field. Modifications to the plasma density and temperature anisotropy are estimated using idealized models. For low temperature anisotropy, there is little change in the whistler‐mode growth rates even for the largest ULF wave amplitude. Only for large temperature anisotropies can whistler‐mode growth rates be modulated sufficiently to account for the changes in electron precipitation measured by riometers at auroral latitudes.
机译:从地面建立磁力计和测量宇宙噪声测量器在极光纬度精力充沛(~ 30 - 300 keV)电子可以调制的降水磁场在超低振荡频率。一个超低频率(ULF)波调制场和等离子体特性在赤道附近平面上,因此修改的增长率惠斯勒波模式。惠斯勒模式波会调解螺距角电子散射导致电离层降水。假设通过定量的变化线性增长率预计由于缓慢变化在当地的磁场强度赤道地区的典型参数约6.6 r_e径向距离。研究中,我们确定最大可能的ULF波从测量磁场的振幅在地球同步轨道。年两颗卫星的观测,我们表明,磁场的变化由于振荡强度在2 mHz没有超过±10%的背景场。等离子体密度和修改使用温度各向异性估计理想化的模型。惠斯勒的几乎没有变化模式最大的增长率甚至ULF波振幅。各向异性可以惠斯勒检测模式的增长率调制足够考虑到更改在电子降水测量宇宙噪声测量器在极光纬度。

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