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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Electron densities in the upper ionosphere of Mars from the excitation of electron plasma oscillations
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Electron densities in the upper ionosphere of Mars from the excitation of electron plasma oscillations

机译:上火星电离层电子密度等离子体激发的电子振荡

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In addition to remote radio sounding of the ionosphere of Mars, the MARSIS (Mars Advanced Radar for Subsurface and Ionospheric Sounding) instrument on the Mars Express spacecraft is also able to measure the in situ electron density from the excitation of local electron plasma oscillations. This paper presents an investigation of the electron density in the upper ionosphere of Mars based on the frequency of these oscillations. The advantage of this method is that electron densities can be measured at much higher altitudes than can be determined from remote radio soundings. Using this technique electron densities from 503 orbits have been analyzed over the period from 4 August 2005 to 31 July 2007 for altitudes ranging from about 275 to 1300 km. Although there is considerable variability from orbit to orbit, the median electron density at a given solar zenith angle (SZA) on the dayside of Mars decreases systematically with increasing altitude with a characteristic plasma scale height varying from about 80 to 145 km. At a fixed altitude, the electron density remains almost constant for SZAs less than about 80°. For SZAs greater than about 80° the electron density decreases rapidly with increasing SZA, approaching very low values on the nightside. Simulations performed using both magnetohydrodynamic and hybrid codes show that the nearly constant density at a given altitude is caused by the horizontal transport of plasma from the dayside toward the nightside due to interaction with the solar wind.
机译:除了远程无线电探空的火星电离层,马西人(火星先进雷达对地下和电离层探测)仪器在火星快车号宇宙飞船也能够原位测量电子密度本地电子等离子体的激发振荡。调查的电子密度基于频率上火星电离层这些振荡。方法是可以测量电子密度比可以确定在更高海拔地区从远程无线电试探。从503轨道电子密度分析了在此期间从2005年8月4日到31日海拔从275到2007年7月1300公里。从轨道的轨道变化,值电子密度在给定太阳天顶角(SZA)火星的光面的减少系统以增加高度等离子体规模高度不同的特征80到145公里。电子密度为SZAs仍然几乎不变小于80°。80°的电子密度迅速减小增加SZA,接近值很低阴面。磁流体动力和混合编码显示近常数密度在一个给定的高度是由等离子体的水平运输吗从的光面的阴面交互与太阳风。

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