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首页> 外文期刊>Annales Geophysicae >EISCAT and ESRAD radars observations of polar mesosphere winter echoes during solar proton events on 11-12 November 2004
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EISCAT and ESRAD radars observations of polar mesosphere winter echoes during solar proton events on 11-12 November 2004

机译:EISCAT和ESRAD雷达于2004年11月11日至12日发生太阳质子事件期间对极地中层冬季回波的观测

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Polar mesosphere winter echoes (PMWE) were detected by two radars, ESRAD at 52 MHz located near Kiruna, Sweden, and EISCAT at 224 MHz located near Tromso, Norway, during the strong solar proton event on 11-12 November 2004. PMWE maximum volume reflectivity was estimated to be 3 × 10~(15) m~(-1) for ESRAD and 2 × 10~(-18) m~(-1) for EISCAT. It was found that the shape of the echo power spectrum is close to Gaussian inside the PMWE layers, and outside of them it is close to Lorentzian, as for the standard ion line of incoherent scatter (IS). The EISCAT PMWE spectral width is about 5-7 m s~(-1) at 64-67 km and 7-10 m s~(-1) at 68-70 km. At the lower altitudes the PMWE spectral widths are close to those for the IS ion line derived from the EISCAT data outside the layers. At the higher altitudes the PMWE spectra are broader by 2-4 m s~(-1) than those for the ion line. The ESRAD PMWE spectral widths at 67-72 km altitude are 3-5 m s~(-1), that is, 2-4 m s~(-1) larger than ion line spectral widths modelled for the ESRAD radar. The PMWE spectral widths for both EISCAT and ESRAD showed no dependence on the echo strength. It was found that all these facts cannot be explained by turbulent origin of the echoes. We suggested that evanescent perturbations in the electron gas generated by the incident infrasound waves may explain the observed PMWE spectral widths. However, a complete theory of radar scatter from this kind of disturbance needs to be developed before a full conclusion can be made.
机译:在2004年11月11日至12日发生的强烈太阳质子事件中,两个雷达探测到了极中层冬季回波(PMWE),这两个雷达位于瑞典基律纳附近52 MHz的ESRAD和位于挪威特罗姆瑟附近224 MHz的EISCAT。 ESRAD的反射率估计为3×10〜(15)m〜(-1),EISCAT的反射率为2×10〜(-18)m〜(-1)。发现,对于非相干散射(IS)的标准离子线,回波功率谱的形状在PMWE层内部接近高斯,而在其外部则接近洛伦兹。 EISCAT PMWE光谱宽度在64-67 km时约为5-7 m s〜(-1),在68-70 km时约为7-10 m s〜(-1)。在较低的高度,PMWE谱宽接近于层外EISCAT数据得出的IS离子谱线的谱宽。在更高的高度,PMWE谱比离子线的谱宽2-4 m s〜(-1)。在67-72 km高度的ESRAD PMWE谱宽为3-5 m s〜(-1),比为ESRAD雷达建模的离子线谱宽大2-4 m s〜(-1)。 EISCAT和ESRAD的PMWE谱宽均与回波强度无关。已经发现,所有这些事实都不能用回声的湍流来解释。我们认为入射次声波在电子气中产生的e逝扰动可以解释观察到的PMWE谱宽。但是,在得出完整的结论之前,需要开发出一种由这种干扰引起的雷达散射的完整理论。

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