首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >A comparison of EISCAT and SuperDARN F-region measurements with consideration of the refractive index in the scattering volume
【24h】

A comparison of EISCAT and SuperDARN F-region measurements with consideration of the refractive index in the scattering volume

机译:比较的EISCAT和SuperDARN F-region测量折射的考虑指数在散射体积

获取原文
获取原文并翻译 | 示例
           

摘要

Gillies et al. (2009) proposed the use of interferometric measurements of the angle of arrival as a proxy for the scattering region refractive index ns needed to estimate the line-of-sight Doppler velocity of the ionospheric plasma from HF [Super Dual Auroral Radar Network (SuperDARN)] radar observations. This study continues this work by comparing measurements of line-of-sight velocities by SuperDARN with tristatic velocity measurements by the EISCAT incoherent scatter radar from 1995 to 1999. From a statistical viewpoint, velocities measured by SuperDARN were lower than velocities measured by EISCAT. This can, at least partially, be explained by the neglect in the SuperDARN analysis of the lower-than-unity refractive index of the scattering structures. The elevation angle measured by SuperDARN was used as a proxy estimate of n_s, and this improved the comparison, but the velocities measured by SuperDARN were still lower. Other estimates of ns using electron densities Ne based on both EISCAT measurements and International Reference Ionosphere model values did not increase the SuperDARN velocities enough to attain the EISCAT values. It is proposed that dense structures that were of comparable size to the SuperDARN scattering volume partially help resolve the low-velocity issue. These dense, localized structures would provide the Ne gradients required for generation of the coherent irregularities from which the SuperDARN radar waves scatter, whereas EISCAT incoherent radar measurements provide only the background Ale and not the density of the small-scale structures. The low-velocity SuperDARN results suggest that small-scale dense structures with refractive indices well below unity must exist within the SuperDARN scattering volume and may contribute greatly to the scattering process.
机译:Gillies et al。(2009)提出的使用干涉测量的角度作为散射区域的代理折射率ns需要估计视线的电离层多普勒速度从高频等离子体超级双极光雷达网络(SuperDARN)雷达观测。继续这项工作通过比较测量通过SuperDARN的视向速度由EISCAT tristatic速度测量非相干散射雷达从1995年到1999年。一个统计的观点,速度来衡量SuperDARN低于速度来衡量EISCAT。解释为SuperDARN忽视分析lower-than-unity折射指数散射的结构。衡量SuperDARN被用作代理n_s估计,这提高了的比较,但速度来衡量SuperDARN仍较低。利用电子密度不基于EISCAT测量与国际参考电离层模型值并没有增加SuperDARN速度足以达到EISCAT值。是SuperDARN相近尺寸的散射体积部分帮助解决低速问题。结构将提供梯度生成所需的连贯SuperDARN雷达的违规行为波散射,而EISCAT非相干雷达测量只提供啤酒和背景不是小规模的密度结构。低速SuperDARN结果表明小规模的致密结构与折射指数低于统一内必须存在SuperDARN散射体积和可能的贡献极大的散射过程。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号