首页> 外文期刊>Geophysical Research Letters >Ducted electromagnetic waves in the Martian ionosphere detected by the Mars Advanced Radar for Subsurface and Ionosphere Sounding radar
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Ducted electromagnetic waves in the Martian ionosphere detected by the Mars Advanced Radar for Subsurface and Ionosphere Sounding radar

机译:火星电离层中的管道电磁波被火星先进雷达探测到,用于地下和电离层探测雷达

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In the data of the Mars Advanced Radar for Subsurface and Ionosphere Sounding on board the European Space Agency (ESA) mission Mars Express (MEX), a distinctive type of signals (called the epsilon signature), which is similar to that previously detected during radio sounding of the terrestrial F region ionosphere, is found. The signature is interpreted to originate from multiple reflections of electromagnetic waves propagating along sounder pulse-created, crustal magnetic field-aligned plasma bubbles (waveguides). The signatures have a low (below 0.5%) occurrence rate and apparent cutoff frequencies 3-5 times higher than the theoretical one for an ordinary mode wave. These properties are explained by the influence of the perpendicular ionospheric plasma density gradient and the sounder pulse frequency on the formation of waveguides.
机译:欧洲航天局(ESA)的火星快车(MEX)载有火星用于地下和电离层测深的高级雷达数据中,一种独特的信号类型(称为epsilon信号),与先前在无线电中检测到的信号相似发现了地面F区电离层的声音。签名被解释为源于电磁波的多次反射,这些电磁波沿着更响的脉冲产生的,与地壳磁场对准的等离子气泡(波导)传播。这些特征码的发生率较低(低于0.5%),其表观截止频率是普通模式波理论值的3-5倍。这些特性由垂直电离层等离子体密度梯度和探测脉冲频率对波导形成的影响来解释。

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