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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >MAVEN observations of electron-induced whistler mode waves in the Martian magnetosphere
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MAVEN observations of electron-induced whistler mode waves in the Martian magnetosphere

机译:MAVEN的观察电子惠斯勒模式波的火星磁层

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We report on narrowband electromagnetic waves at frequencies between the local electron cyclotron and lower hybrid frequencies observed by the Mars Atmosphere and Volatile EvolutioN (MAVEN) spacecraft in the Martian induced magnetosphere. The peaked electric field wave spectra below the electron cyclotron frequency were first observed by Phobos-2 in the Martian magnetosphere, but the lack of magnetic field wave data prevented definitive identification of the wave mode and their generation mechanisms remain unclear. Analysis of electric and magnetic field wave spectra obtained by MAVEN demonstrates that the observed narrowband waves have properties consistent with the whistler mode. Linear growth rates computed from the measured electron velocity distributions suggest that these whistler mode waves can be generated by cyclotron resonance with anisotropic electrons. Large electron anisotropy in the Martian magnetosphere is caused by absorption of parallel electrons by the collisional atmosphere. The narrowband whistler mode waves and anisotropic electrons are observed on both open and closed field lines and have similar spatial distributions in MSO and planetary coordinates. Some of the waves on closed field lines exhibit complex frequency-time structures such as discrete elements of rising tones and two bands above and below half the electron cyclotron frequency. These MAVEN observations indicate that whistler mode waves driven by anisotropic electrons, which are commonly observed in intrinsic magnetospheres and at unmagnetized airless bodies, are also present at Mars. The wave-induced electron precipitation into the Martian atmosphere should be evaluated in future studies.
机译:我们报告在窄频电磁波频率之间的本地电子回旋和较低的混合频率观测到火星大气与挥发性演化(MAVEN)宇宙飞船在火星感应磁场。下面的峰值电场波光谱电子回旋频率被首次发现Phobos-2在火星磁层,但是缺乏预防磁场波数据波模式和明确的标识他们这一代人机制尚不清楚。电场和磁场波的分析MAVEN表明获得的光谱观察到窄带波属性与惠斯勒模式一致。从测量电子利率计算表明这些速度分布惠斯勒可以生成模式波回旋与各向异性谐振电子。电子在火星磁层各向异性是由平行的吸收电子的吗碰撞的氛围。惠斯勒波和各向异性电子方式开放和封闭电场线和有类似的空间分布在美索和行星坐标。关闭电场线表现出复杂的频率时间等结构的离散元素上升音调和两个乐队上方和下方的一半电子回旋频率。观测表明,惠斯勒波模式由各向异性电子,这是通常在内在不但和观察在垂直入射无气的身体,也存在在火星。进入火星大气应该评估在未来的研究。

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