首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >First observations of SPEAR-induced topside and bottomside sporadic E layer heating observed using the EISCAT Svalbard and SuperDARN radars
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First observations of SPEAR-induced topside and bottomside sporadic E layer heating observed using the EISCAT Svalbard and SuperDARN radars

机译:第一次观察SPEAR-induced上部bottomside分散E层加热使用EISCAT斯瓦尔巴特群岛和SuperDARN雷达

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We present the first observations of heater-induced simultaneous topside and bottomside sporadic E layer enhancements at very high latitudes (78.15°N) using the Space Plasma Exploration by Active Radar (SPEAR) heating facility and the European Incoherent Scatter (EISCAT) Svalbard Radar. During the experiment the SPEAR heating facility was transmitting with 0-mode polarization in a field-aligned direction with a constant effective radiated power of ~16 MW. Results show distinct heater-induced enhancements in both the ion and plasma line spectra. The plasma line enhancements are observed at the SPEAR heater frequency of 4.45 MHz. The plasma line observations represent the highest spatial resolution data (100 m) obtained of such heater-induced enhancements and indicate simultaneous enhancements at both the topside and bottomside of the layer, respectively (located at~107.5 and 109 km altitude, respectively). It is postulated that the results represent evidence of 0- to Z-mode conversion of the heater wave occurring at the bottom of the E layer, allowing propagation through the layer resulting in simultaneous topside enhancements. The Z-mode enhancements are observed outside the Spitze angle, which is thought to be a result of field-aligned irregularities causing an increase in angular extent of the observations. Additional data from the Super Dual Auroral Radar Network (SuperDARN) HF Finland radar are also shown, which indicate that upon a thinning of the sporadic E layer, the heater beam propagated into the F region, where it induced artificial field-aligned irregularities.
机译:我们提出的第一个观察同时heater-induced上部和在非常bottomside分散E层增强高纬度地区(78.15°N)使用空间等离子体探索通过主动雷达(枪)加热设施和欧洲非相干散射斯瓦尔巴特群岛雷达(EISCAT)。枪加热设施传输了0-mode极化方向field-aligned以一个恒定的有效辐射功率~ 16MW。增强离子和等离子体线光谱。观察到枪加热频率为4.45MHz。高空间分辨率数据(100)这样的heater-induced增强和指示同时在上部和增强bottomside层,分别(所在地~ 107.5和109公里高度,分别)。是假定的结果代表了证据加热器的0 -或者转换波发生在E层的底部,允许通过层导致传播同时在上面的增强。增强观察Spitze外角,这被认为是由于field-aligned违规行为导致增加在角的观测。超级双极光雷达的数据网络芬兰(SuperDARN)高频雷达也显示,这表明,在稀疏的吗分散E层,加热光束传播F区,诱导人工field-aligned违规行为。

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