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Radar scatter from equatorial electrojet waves: An explanation for the constancy of the Type I Doppler shift with zenith angle

机译:赤道电喷波的雷达散射:解释具有天顶角的I型多普勒频移的恒定性

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The first results from the 430 MHz Advanced Modular Incoherent Scatter Radar Prototype (AMISR-P) at the Jicamarca Radio Observatory were reported by Hysell et al. (2007). We present additional data showing that the phase velocity of Type I echoes is independent of zenith angle, an unexplained property of these waves. We interpret the results using rocket data by predicting the total line-of-sight velocity at the four zenith angles used. We find that the radars preferentially detect waves within 10% of C-s in at least four range gates for all beams and up to eight range gates for the 51 JULIA beam. This result is consistent with recent auroral observations that Type I waves are only generated with k vectors near the electron flow velocity, where the latter is the vector sum of the zero-order drift and the perturbation drift due to large-scale waves in the equatorial case.
机译:Hysell等人在Jicamarca无线电天文台报道了430 MHz先进模块化不相干散射雷达原型(AMISR-P)的第一个结果。 (2007)。我们提供的其他数据表明,I型回波的相速度与天顶角无关,天顶角是这些波的无法解释的特性。我们使用火箭数据通过预测所使用的四个天顶角的总视线速度来解释结果。我们发现,雷达优先检测所有波束的至少四个测距门,以及对于51 JULIA波束的多达八个测距门,在C-s的10%以内检测波。这一结果与最近的极光观测结果一致,即I型波仅在电子流速附近由k个矢量产生,其中后者是赤道中大尺度波引起的零阶漂移和摄动漂移的矢量和。案件。

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