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Lunar Gravitational Focusing of Meteoroid Streams and Sporadic Sources

机译:流星体流和零星源的月球引力聚焦

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摘要

Recent work on the gravitational focusing of meteoroid streams and their threat to satellites and astronauts in the near-Earth environment has concentrated on Earth acting as the gravitational attractor, totally ignoring the Moon. Though the Moon is twelve-thousandths the mass of the Earth, it too can focus meteors, albeit at a much greater distance downstream from its orbital position in space. At the Earth–Moon distance during particular phases of the Moon, slower speed meteoroid streams with very compact radiant diameters can show meteoroid flux enhancements in Earth’s immediate neighborhood. When the right geometric alignment occurs, this arises as a narrowed beam of particles of approximately 1,000 km width. For a narrow radiant of one-tenth degree diameter there is a 10-fold increase in the level of flux passing through the near-Earth environment. Meteoroid streams with more typical radiant sizes of 1° show at most two times enhancement. For sporadic sources, the enhancement is found to be insignificant due to the wide angular spread of the diffuse radiant and thus may be considered of little importance.
机译:关于流星体流的重力聚焦及其在近地环境中对卫星和宇航员的威胁的最新工作已集中在充当重力吸引器的地球上,而完全忽略了月球。尽管月球是地球质量的十二分之一,但它也可以聚焦流星,尽管距其在太空中的轨道位置较远。在月球特定阶段的月球距离上,辐射直径非常紧凑的速度较慢的流星体流可以显示出地球附近的流星体通量增加。当正确的几何对准发生时,这是由于窄的约1000 km宽的粒子束而引起的。对于十分之一直径的狭窄辐射,通过近地环境的通量水平将增加10倍。具有更典型辐射尺寸为1°的流星体流最多显示两倍的增强。对于零星源,由于扩散辐射的宽角度展宽,因此发现增强不明显,因此可以认为它的重要性不大。

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