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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Forward mapping of solar energetic proton distributions through the geomagnetic field
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Forward mapping of solar energetic proton distributions through the geomagnetic field

机译:提出太阳能高能质子的映射通过磁场分布

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[1] During solar proton events, large ejections of energetic protons spread throughout the interplanetary medium, penetrate the geomagnetic field, and are deposited in the upper polar atmosphere where they play important roles in its physical and chemical processes. We develop a model of direct proton propagation through a static geomagnetic field based on a generalized leapfrog method and validate it through comparison with St?rmer theory. We then apply the algorithm to two ideal cases representing the late and early phases of a solar particle event, for proton energies of 10, 100, and 1000 MeV. The late-phase case is represented by an isotropic infinite bath of protons surrounding the magnetosphere; in this case, most protons reaching the polar cap originate within ±20° of the magnetic equatorial plane, with pronounced peaks near ±20°. The early-phase case is represented by broad, monodirectional proton beams; these sources are highly focused by the geomagnetic field, with all particles mapping to small regions in the polar cap only a few hundred kilometers across, and with low-energy particles being focused more than higher-energy ones. Pure dipole and International Geomagnetic Reference Field-11 magnetic field models lead to very similar fluence patterns in the polar cap, though the latter are somewhat less focused.
机译:[1]在太阳质子事件,大量抛射高能质子传遍了星际介质,穿透地磁场,并存入上极大气中扮演重要角色物理和化学过程。直接通过质子传播模型基于广义的静态磁场超越方法和验证通过与圣?算法两个理想情况下代表晚,早期阶段的太阳粒子事件,质子的能量10、100和1000伏。晚期病例是由各向同性无限的浴周围的质子磁气圈;到达极地冰冠±20°内产生磁赤道平面,明显附近的山峰±20°。由广泛的、单向的质子梁;地磁场,所有粒子映射小区域的极冠只有几百公里,低能粒子被集中多高能的。偶极子与国际地磁参考导致非常Field-11磁场模型不过,极地冰冠类似的影响模式后者不太集中。

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