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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Excitation of the ionospheric Alfvén resonator from the ground: Theory and experiments
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Excitation of the ionospheric Alfvén resonator from the ground: Theory and experiments

机译:电离层阿尔芬谐振器的激励从地面:理论和实验

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We report results from numerical and experimental studies of the excitation of ULF shear Alfvén waves inside the ionospheric Alfvén resonator (IAR) by heating the ionosphere with powerful HF waves launched from the High Frequency Active Auroral Research Program (HAARP) facility in Alaska. Numerical simulations of the two‐fluid MHD model describing IAR in a dipole magnetic field geometry with plasma parameters taken from the observations at HAARP during the October–November 2010 experimental campaign reveal that the IAR quality is higher during nighttime conditions, when the ionospheric conductivity is very low. Simulations also reveal that the resonance wave cannot be identified from the magnetic measurements on the ground or at an altitude above 600 km because the magnetic field in this wave has nodes on both ends of the resonator, and the best way to detect IAR modes is by measuring the electric field on low Earth orbit satellites. These theoretical predictions are in good, quantitative agreement with results from observations: In particular, (1) observations from the ground‐based magnetometer at the HAARP site demonstrate no significant difference in the amplitudes of the magnetic field generated by HAARP in the frequency range from 0 to 5 Hz, and (2) the DEMETER satellite detected the electric field of the IAR first harmonic at an altitude of 670 km above HAARP during the heating experiment.
机译:我们从数值和实验报告结果研究激励的ULF剪切阿尔芬电波在电离层阿尔芬谐振器(IAR)通过加热电离层高频与强大波发射的高频活跃极光研究项目(HAARP设施)阿拉斯加。磁流体动力模型描述IAR偶极磁场从场与等离子体几何参数在HAARP在观察2010年的10月实验活动显示,在IAR质量高夜间条件,当电离层导电率非常低。共振波不能被识别磁测量地面上或在一个海拔600公里以上,因为磁场在这波在两端的节点谐振器,和最好的方法来检测IAR模式通过测量电场低地球吗轨道卫星。好,定量协议结果从观察:特别是,(1)从地面观测的基于磁强计HAARP现场演示没有显著不同磁场的振幅HAARP字段生成的频率范围从0到5赫兹,(2)得墨忒耳卫星检测到的电场IAR谐波在HAARP上空670公里的高度在加热实验。

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