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Volume cross section of auroral radar backscatter and RMS plasma fluctuations inferred from coherent and incoherent scatter data: a response on backscatter volume parameters

机译:从相干和非相干散射数据推断出的极光雷达反向散射的体积横截面和RMS等离子体波动:对反向散射体积参数的响应

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摘要

Norway and Finland STARE radar measurements in the eastward auroral electrojet are combined with EISCAT CP-1 measurements of the electron density and electric field vector in the common scattering volume to investigate the variation of the auroral radar volume cross section (VCS) with the flow angle of observations (radar look direction with respect to the E x B electron drift). The data set available consists of ~6000 points for flow angles of 40-85° and electron drifts between 500 and 2000 m s~(-1). The EISCAT electron density N(h)-profile data are used to estimate the effective electron density, aspect angle and thickness of the backscattering layer. It is shown that the flow angle variation of the VCS is rather weak, only ~5 dB within the range of the considered flow angles. The VCS values themselves respond almost linearly to the square of both the electron drift velocity magnitude and the effective electron density. By adopting the inferred shape of the VCS variation with the flow angle and the VCS dependence upon wavelength, the relative amplitude of electrostatic electron density fluctuations over all scales is estimated. Inferred values of 2-4 percent react nearly linearly to the electron drift velocity in the range of 500-1000 m s~(-1) but the rate of increase slows down at electron drifts > 1000 ms~(-1) and density fluctuations of ~5.5 percent due to, perhaps, progressively growing nonlinear wave losses.
机译:将挪威和芬兰STARE雷达在东极光电喷中的测量结果与EISCAT CP-1对常见散射体积中电子密度和电场矢量的测量结果相结合,以研究极光雷达体积横截面(VCS)随流动角的变化观测值(相对于E x B电子漂移的雷达观测方向)。可用的数据集由约6000个点组成,流角为40-85°,电子漂移在500至2000 m s〜(-1)之间。 EISCAT电子密度N(h)轮廓数据用于估计背向散射层的有效电子密度,纵横角和厚度。结果表明,VCS的流角变化很小,在所考虑的流角范围内仅为〜5 dB。 VCS值本身几乎对电子漂移速度大小和有效电子密度的平方线性响应。通过采用VCS变化的推断形状(随流动角度变化和VCS依赖于波长),可以估算所有尺度上静电电子密度波动的相对幅度。推断的2-4%的值在500-1000 ms〜(-1)范围内对电子漂移速度几乎呈线性反应,但当电子漂移> 1000 ms〜(-1)且电子密度变化时,增加速率减慢〜5.5%可能是由于非线性波损耗逐渐增加所致。

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