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Radar studies of lightning-induced plasmas with potential applications to radio communications and space surveillance

机译:雷电等离子体的雷达研究及其在无线电通信和太空监视中的潜在应用

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The problem of radio backscatter from lightning-induced plasmas is briefly reviewed. The predicted wavelength dependence of the backscattered power is compared to observations made with the MIT S band, C band and the Millstone UHF radar. The analysis is extended to a pancakelike plasma created through single radar beam heating of the atmosphere. The artificial plasmas are modeled as perfectly conducting, rough plasma disks, with random surface inhomogeneities described by either a Gaussian or power law type spectrum. Both monostatic and bistatic radar geometries are considered. These may be used in diagnostic and space surveillance/radio communication applications, respectively. The wavelength dependence of the radio reflectivity of a plasma pancake with Gaussian type surface roughness is found to be different from that of a plasma with a power law type surface roughness in the backscatter radar geometry. In the radio communication and space surveillance applications, the radio reflectivity may be independent of the incident wavelength, if the surface density inhomogeneities are characterized by an azimuthally symmetric power law type spectrum. By contrast, a wavelength dependence is expected for the Gaussian type spectrum.
机译:简要回顾了雷电引起的等离子体的无线电反向散射问题。将反向散射功率的预测波长依赖性与MIT S波段,C波段和Millstone UHF雷达的观测结果进行比较。该分析扩展到通过大气的单雷达束加热产生的煎饼状等离子体。人造等离子体被建模为完美导电的粗糙等离子体盘,具有由高斯或幂律型谱描述的随机表面不均匀性。单静态和双静态雷达的几何形状都被考虑了。它们可以分别用于诊断和空间监视/无线电通信应用中。发现在后向散射雷达几何形状中,具有高斯型表面粗糙度的等离子煎饼的辐射反射率与波长的相关性不同于具有幂律型表面粗糙度的等离子煎饼的辐射反射率的相关性。在无线电通信和空间监视应用中,如果表面密度不均匀性由方位角对称幂律类型光谱表征,则无线电反射率可能与入射波长无关。相反,对于高斯型光谱,期望波长依赖性。

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