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Discovery of the action of a geophysical synchrotron in the Earth’s Van Allen radiation belts

机译:发现地球范艾伦辐射带中地球物理同步加速器的作用

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Although the Earth’s Van Allen radiation belts were discovered over 50 years ago, the dominant processes responsible for relativistic electron acceleration, transport and loss remain poorly understood. Here we show evidence for the action of coherent acceleration due to resonance with ultra-low frequency waves on a planetary scale. Data from the CRRES probe, and from the recently launched multi-satellite NASA Van Allen Probes mission, with supporting modelling, collectively show coherent ultra-low frequency interactions which high energy resolution data reveals are far more common than either previously thought or observed. The observed modulations and energy-dependent spatial structure indicate a mode of action analogous to a geophysical synchrotron; this new mode of response represents a significant shift in known Van Allen radiation belt dynamics and structure. These periodic collisionless betatron acceleration processes also have applications in understanding the dynamics of, and periodic electromagnetic emissions from, distant plasma-astrophysical systems.
机译:尽管地球的Van Allen辐射带是50多年前发现的,但对相对论性电子加速,传输和损耗的主要过程仍知之甚少。在这里,我们显示了由于行星尺度上与超低频波发生共振而引起相干加速度作用的证据。来自CRRES探测器的数据,以及最近启动的多卫星NASA范艾伦探测器任务的数据,加上支持的建模,共同显示了相干的超低频相互作用,而高能分辨率数据揭示的相互作用远比以前认为或观察到的更为普遍。观测到的调制和能量相关的空间结构表明了一种类似于地球物理同步加速器的作用方式。这种新的响应方式表示已知的Van Allen辐射带动力学和结构发生了重大变化。这些周期性的无碰撞电子加速器加速过程还可以用于了解遥远的等离子体-天体物理系统的动力学以及周期性的电磁辐射。

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