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Vertical plasma extent above the lunar surface derived from interference pattern of auroral kilometric radiation

机译:源于极光公里辐射的干涉图样的月球表面上方的垂直血浆范围

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The lunar atmosphere is extremely tenuous compared to the Earth''s atmosphere and circumlunar plasma produced by photoionization is considered to be less dense than solar wind. Nevertheless, it was reported that 500 to 1000 cm−3 electron densities were observed at altitudes of 5 to 10 km near the sunrise terminator by the Soviet Luna 19 and 22 in the 1970s. The high-density layer was interpreted to be the lunar ionosphere. This result remains controversial, however, because the observed large density is difficult to explain theoretically without magnetic shielding from the solar wind. Observation data on the circumlunar plasma were very scarce and the existence of the lunar ionosphere had been neither experimentally proved nor disproved while many researchers have tried to explain its generation mechanism. The Japanese Kaguya project provided the opportunity to diagnose the vertical extent of the circumlunar plasma through a new approach using interference patterns of natural plasma waves in addition to the conventional radio occultation experiment. Although the radio occultation technique is profoundly influenced by the earth''s ionosphere, the newly-developed method can sensitively detect plasma layers regardless of the conditions of the earth''s ionosphere. In the present study, using the new method, we estimated the vertical electron densities at the terminator regions and examined whether the high-density layer actually existed or not.
机译:与地球大气相比,月球大气极为脆弱,通过光电离产生的绕月等离子体被认为比太阳风密度低。然而,据报道,在1970年代,苏联Luna 19和22在日出终结者附近5至10 km的高度观测到500至1000 cm −3 电子密度。高密度层被解释为月球电离层。但是,该结果仍存在争议,因为在没有磁屏蔽太阳风的情况下,很难从理论上解释观测到的大密度。围绕月球血浆的观察数据非常稀少,并且月球电离层的存在既没有经过实验证明也没有得到证实,同时许多研究人员试图解释其产生机理。日本的Kaguya项目提供了一种机会,除了传统的无线电掩星实验之外,还可以通过一种利用自然等离子体波的干涉图样的新方法来诊断diagnose周围血浆的垂直范围。尽管无线电掩星技术受到地球电离层的深刻影响,但是无论地球电离层的状况如何,新开发的方法都可以灵敏地检测等离子体层。在本研究中,使用新方法,我们估算了终止子区域的垂直电子密度,并检查了高密度层是否确实存在。

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