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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Magnetic aspect sensitivity of high-latitude E region irregularities measured by the RAX-2 CubeSat
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Magnetic aspect sensitivity of high-latitude E region irregularities measured by the RAX-2 CubeSat

机译:磁方面的敏感性高纬度E地区违规RAX-2测量

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The second Radio Aurora Explorer (RAX-2) satellite has completed more than 30 conjunction experiments with the Advanced Modular Incoherent Scatter Radar chain of incoherent scatter radars in Alaska and Resolute Bay, Canada. Coherent radar echoing occurred during four of the passes: three when E region electron drifts exceeded the ion acoustic speed threshold and one during HF heating of the ionosphere by the High Frequency Active Auroral Research Program heater. In this paper, we present the results for the first three passes associated with backscatter from natural irregularities. We analyze, in detail, the largest drift case because the plasma turbulence was the most intense and because the corresponding ground-to-space bistatic scattering geometry was the most favorable for magnetic aspect sensitivity analysis. A set of data analysis procedures including interference removal, autocorrelation analysis, and the application of a radar beam deconvolution algorithm mapped the distribution of E region backscatter with 3 km resolution in altitude and ~0.1? in magnetic aspect angle. To our knowledge, these are the highest resolution altitude-resolved magnetic aspect sensitivity measurements made at UHF frequencies in the auroral region. In this paper, we show that despite the large electron drift speed of ~1500 m/s, the magnetic aspect sensitivity of submeter scale irregularities is much higher than previously reported. The root-mean-square of the aspect angle distribution varied monotonically between 0.5? and 0.1? for the altitude range 100–110 km. Findings from this single but compelling event suggest that submeter scale waves propagating at larger angles from the main E × B flow direction (secondary waves) have parallel electric fields that are too small to contribute to E region electron heating. It is possible that anomalous electron heating in the auroral electrojet can be explained by (a) the dynamics of those submeter scale waves propagating in the E × B direction (primary waves) or (b) the dynamics of longer wavelengths.
机译:第二部广播剧极光Explorer (RAX-2)卫星完成了30多个结合实验与先进的模块化的语无伦次非相干散射雷达散射雷达链在阿拉斯加和坚决湾,加拿大。雷达与发生在四个传递:三个当E地区电子漂移超过了在高频离子声波速度阈值和一个由高频加热的电离层活跃极光研究项目加热器。,结果前三通过从自然与后向散射违规行为。最大的漂移情况,因为等离子体湍流是最强烈的,因为相应的空间收发分置的散射几何是最有利于磁方面的敏感性分析。分析过程包括干扰自相关分析,去除应用雷达波束的反褶积算法映射E的分布地区后向散射与3公里高度和决议~ 0.1吗?这是最高的分辨率altitude-resolved磁敏感性方面测量在超高频频率极光的地区。尽管~ 1500的大型电子漂移速度m / s,分表的磁敏感性方面规模远高于有违规行为之前报道。视线角分布不同的单调在0.5吗?100 - 110公里。引人注目的事件表明,分表规模电波传播在大角度从主E×B流向(二级波)平行电场太小为E地区电子加热。可能的反常电子加热的极光电喷流可以用()来解释动态的分表规模传播的E×B(主要方向波)或(b)的动态波长更长。

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