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Inferring D region parameters using improved incoherent scatter radar techniques at Arecibo

机译:在Arecibo使用改进的非相干散射雷达技术推断D区域参数

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With the increased sensitivity and bandwidth, Arecibo 430 MHz incoherent scatter radar was run on 23 July 2006 using two radar modes with a focus on measuring D region parameters. One mode measured the ion line spectra over D region altitudes; the other mode was used as a new way to calibrate the electron densities in the D region and also to correct the ion line spectra. The ion line primarily provided a power profile connecting the D region to altitudes where the plasma line is useful. The plasma line provided the absolute electron density, used in the lower altitudes for calibration, and at F region altitudes for determining the baseline level in the D region spectra due to the folding-in of F region scattered power. It is found that the electron line contribution is about 1–3 times the ion line between 60–75 km altitude ranges. Electron concentration was found to be in the range of a few hundred to 5000 cm?3 in the 65–90 km altitude range. The new technique agrees well with the previous measurements. The D region spectral widths were used to calculate the ratio of negative ion to electron concentration (λ). Between 0900 and 1100 LT, a 4 km thick layer of negative ions was observed with λ ~ 1.6 ± 0.3 around 73–77 km. In the altitude range of 81–91 km, we inferred temperatures ~ 195–215 K using ion-neutral collision frequencies determined from the spectral widths.
机译:随着灵敏度和带宽的增加,2006年7月23日使用两种雷达模式运行了Arecibo 430 MHz非相干散射雷达,重点是测量D区域参数。一种模式是在D区域的海拔高度上测量离子线谱;另一种模式用作校准D区电子密度并校正离子线谱的新方法。离子线主要提供将D区连接到等离子线有用的高度的功率曲线。等离子体线提供了绝对的电子密度,用于较低的高度进行校准,并在F区域的高度用于确定D区域光谱中的基线水平,这是由于F区域散射功率的折入。发现在60–75 km高度范围内,电子线贡献约为离子线的1-3倍。在65-90 km的高度范围内,发现电子浓度在几百到5000 cm?3之间。新技术与以前的测量非常吻合。 D区域的光谱宽度用于计算负离子与电子浓度的比率(λ)。在0900到1100 LT之间,观察到4 km厚的负离子层,在73–77 km处具有λ〜1.6±0.3。在81–91 km的海拔范围内,我们使用根据光谱宽度确定的离子中性碰撞频率推断了195〜215 K的温度。

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