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A novel technique to construct the global distribution of whistler mode chorus wave intensity using low-altitude POES electron data

机译:一种新的方法来计算构建全球惠斯勒合唱模式波的分布强度使用低空坡电子数据

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摘要

Although magnetospheric chorus plays a significant role in the acceleration and loss of radiation belt electrons, its global evolution during any specific time period cannot be directly obtained by spacecraft measurements. Using the low-altitude NOAA Polar-orbiting Operational Environmental Satellite (POES) electron data, we develop a novel physics-based methodology to infer the chorus wave intensity and construct its global distribution with a time resolution of less than an hour. We describe in detail how to apply the technique to satellite data by performing two representative analyses, i.e., (i) for one specific time point to visualize the estimation procedure and (ii) for a particular time period to validate the method and construct an illustrative global chorus wave model. We demonstrate that the spatiotemporal evolution of chorus intensity in the equatorial magnetosphere can be reasonably estimated from electron flux measurements made by multiple low-altitude POES satellites with a broad coverage of L shell and magnetic local time. Such a data-based, dynamic model of chorus waves can provide near-real-time wave information on a global scale for any time period where POES electron data are available. A combination of the chorus wave spatiotemporal distribution acquired using this methodology and the direct spaceborne wave measurements can be used to evaluate the quantitative scattering caused by resonant wave-particle interactions and thus model radiation belt electron variability.
机译:虽然磁性层的合唱起着重要在加速度和损失的辐射作用在任何带电子,其全球进化特定时间内不能直接获得航天器的测量。低空NOAA极轨操作环境卫星(po)电子数据,我们开发一种新颖的基于物理方法推断合唱波强度和构造它全球分布的时间分辨率不到一个小时。此技术应用于卫星数据执行两个代表性分析,即,(我)一个特定的时间点可视化估计过程,(2)为特定的时间验证方法和构造一个说明性的全球合唱波模型。证明的时空演化合唱赤道磁气圈的强度从电子通量可以合理估计测量由多个低空坡卫星覆盖广泛的壳磁当地时间。合唱波可以提供近实时的模型波信息在全球范围内的任何时间时期,坡电子数据是可用的。合唱的组合波时空使用这个方法和分布了直接测量星载波用于评估量化散射由谐振波粒相互作用和引起的因此模型辐射带电子的变化。

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