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Semidiurnal Tidal Influence on the Occurrence of Postmidnight F Region FAI Radar Echoes

机译:半日潮汐影响的发生Postmidnight F地区FAI雷达回波

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The Equatorial Atmosphere Radar observations at Kototabang (0.2°S, 100.3°E) are used to study the possible semidiurnal tidal influence on the occurrence of postmidnight echoes from the field-aligned irregularities (FAIs) due to spread F. It is found that the postmidnight FAI echoes show high percentage of occurrence (PO) during June-July and low PO in December-January of low solar activity years. As solar activity approaches minimum, the PO increase is extended to May, August, and September. The space-time Fourier analysis on the temperature information obtained from the Sounding of Atmosphere by Broadband Emission Radiometry instrument onboard Thermosphere Ionosphere Mesosphere Energetics and Dynamics satellite reveals that at the low-latitude upper mesospheric heights, though the migrating diurnal tide propagating westward with zonal wavenumber (k) 1 (DW1) dominates the migrating semidiurnal tide propagating westward with k = 2 (SW2) particularly during the equinox months, the SW2 tidal amplitudes are larger than DW1 during June-July. The postmidnight FAI echoes appear to be more frequent during the sudden stratospheric warming of the Solar Minimum Years 2018-2019 and 2008-2009 but not in the Solar Maximum Year 2013. The dominance of SW2 over DW1 is also noted during these years. This indicates that the SW2 plays a major role in the occurrence of postmidnight spread F. It is suggested that the dominant semidiurnal variation of zonal electric field can become eastward and lift the F layer to higher heights during midnight hours, which can favor the growth of the Rayleigh-Taylor instability to cause delayed spread F around midnight.
机译:赤道大气雷达观测Kototabang(0.2°S, 100.3°E)用于研究可能的半日潮汐影响从发生postmidnight回声由于传播field-aligned违规行为(做)f是发现postmidnight FAI回声展示期间发生(PO)的比例高6、低PO辛普森的低太阳活动。接近最低,PO增加扩展5月,8月和9月。傅里叶分析的温度信息从大气的探测宽带发射辐射测量仪器热大气层电离层中间层能量卫星显示,在动力学低纬度上层中层高度全日潮传播向西迁移与纬向波数(k) 1 (DW1)占主导地位向西迁移半日潮传播与k = 2 (SW2)特别是在equinox个月,SW2潮汐振幅大于DW1在6。似乎在突然更频繁平流层太阳能最低年的变暖2018 - 2019和2008 - 2009而不是太阳最大的2013年。这些年来也指出。SW2的发生中起着重要作用postmidnight传播的建议的主要半日变化区域电场可以成为东和F在午夜时间层更高的高度,可以支持瑞利泰勒的增长不稳定导致延迟传播F午夜。

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