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Coordinated optical and radar observations of ionospheric pumping for a frequency pass through the second electron gyroharmonic at HAARP

机译:协调的光学和雷达观测电离层频率通过抽水第二个电子在HAARP gyroharmonic

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On 4 February 2005, the High-frequency Active Auroral Research Program (HAARP) facility was operated in O and X mode while pointing into the magnetic zenith to produce artificial optical emissions in the ionospheric F layer. The pump frequency was set to 2.85 MHz to ensure passing through the second electron gyroharmonic of the decaying ionosphere. Optical recordings at 557.7 and 630 nm were performed simultaneously with the side-viewing high frequency (HF) and colocated ultra high frequency (UHF) ionospheric radars. No X-mode effects were found. For O-mode pumping, when passing from below to above the second gyroharmonic frequency, the optical intensity shows a distinct increase when the plasma frequency passes through the second electron gyroharmonic, while the UHF backscatter changes from persistent to overshoot in character. The optical intensity decreases when pump wave reflection ceases, dropping to zero when upper-hybrid resonance ceases. The HF radar backscatter increases when the upper-hybrid resonance frequency passes from below to above the second gyroharmonic frequency. These observations are consistent with the coexistence of the parametric decay and thermal parametric instabilities above the second gyroharmonic. The combined optical and radar data provide evidence that up to three electron-acceleration mechanisms are acting, sometimes simultaneously, depending on the pump frequency relative to the second gyroharmonic. In addition, we provide the first evidence of lower-hybrid waves in HF radar centerline data and show that the parametric decay instability producing Langmuir waves can be stimulated in the magnetic zenith at high latitudes despite the pump wave not reaching the nominal frequency-matching height.
机译:2005年2月4日,高频活跃极光研究项目(HAARP)设施在O和X模式同时指向磁天顶生产人造光排放在电离层F层。频率设置为2.85 MHz,确保通过通过第二个电子gyroharmonic腐烂的电离层。和630海里同时进行侧视高频(HF)和托管超高频(UHF)电离层雷达。X-mode效应被发现。当从下面第二个以上gyroharmonic频率,光强度等离子体时显示了明显的增加通过第二个电子频率gyroharmonic,超高频后向散射的变化从持久的性格过度。光强度降低时,泵波当反射停止,下降为零upper-hybrid共振停止。后向散射增加upper-hybrid时共振频率通过从下面到上面第二个gyroharmonic频率。与共存的观察是一致的参数的衰减和热参数不稳定第二gyroharmonic之上。结合光学和雷达数据提供证据这三个电子加速机制同时表演,有时,不同吗在泵频率相对于第二个gyroharmonic。在高频雷达低混杂波的证据中心线数据和显示参数衰变不稳定生产朗缪尔波刺激在高磁天顶纬度尽管泵波没有到达名义frequency-matching高度。

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