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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Deflection and enhancement of solar energy particleflux at the Moon by structures within the terrestrialmagnetosphere
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Deflection and enhancement of solar energy particleflux at the Moon by structures within the terrestrialmagnetosphere

机译:太阳能的偏转和增强particleflux在月球内部结构terrestrialmagnetosphere

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[1] The Moon spends 25% of its orbit within the terrestrial magnetosphere. Particletracking is used to investigate access points of 35 MeV and 760 MeV particles into themagnetosphere for both quiet and disturbed magnetospheric conditions. The resultsindicate that solar energetic particle (SEP) flux at the Moon can be reduced for stormconditions when the magnitude of the magnetic field in the sheath is enhanced, as particlesin the 35 MeV range have limited access to the magnetosphere for storm conditions.Plasmoids are also effective at reducing SEP flux from the tailward direction. The resultsalso indicate that the flux of SEPs from the dawnside of the magnetosphere can be focusedinto the current sheet, leading to a potential enhancement in SEP flux at the Moon.Particles traveling up the tail for both quiet and storm conditions tended to experience thegreatest deflection away from the central tail.
机译:[1]在月亮将25%的轨道地球磁气圈。用于调查35兆电子伏的接入点760伏粒子为两themagnetosphere安静和干扰磁性层的条件。太阳高能粒子的resultsindicate(9)通量在月球可以减少stormconditions的大小鞘中磁场增强,particlesin 35兆电子伏范围有限的访问磁气圈的风暴条件。减少9月通量从tailward方向。SEPs resultsalso表明通量dawnside的磁气圈focusedinto当前表,导致潜在的增强在9月通量月球。安静和风暴条件倾向于经验最远离中央挠度尾巴。

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