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Electron density and electric field over Resolute Bay and F region ionospheric echo detection with the Rankin Inlet and Inuvik SuperDARN radars

机译:朗肯入口和Inuvik SuperDARN雷达在确定性海湾和F区电离层回波探测中的电子密度和电场

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摘要

Joint observations of the Rankin Inlet and Inuvik Super Dual Auroral Radar Network HF radars and Resolute Bay (RB) Canadian Advanced Digital lonosonde are used to assess the electron density at the F region peak and the electric field magnitude as factors affecting echo detection over RB. We demonstrate that the radars show similar diurnal and seasonal variations in ionospheric echo occurrence. During nighttime and at radar frequencies of ~12 MHz, optimum densities for both radars are shown to be ~1.4 × 10~5 cm~(-3), ~1.8 × 10~5cm~(-3), and ~2.0 × 10~5cm~(-3) for winter, equinox, and summer, respectively. During daytime, optimum densities are larger by (0.2 - 0.3) × 10~5 cm~(-3). Observations at lower radar frequencies of ~10 MHz show smaller required densities during nighttime, by ~0.3 × 10~5 cm~(-3). Optimum electric fields for the moments of echo detection over RB are found to be 5-25 mV/m with no clear threshold effect and any seasonal dependence. The presented data suggest that for echo detection, favorable propagation conditions along the entire path of radio waves toward the scattering volume are important.
机译:Rankin入口和Inuvik超级双极光雷达网络HF雷达和Resolute Bay(RB)加拿大先进数字式探空仪的联合观测被用来评估F区峰值处的电子密度和电场强度,这些是影响RB回波检测的因素。我们证明了雷达在电离层回波发生中显示出类似的昼夜变化。在夜间以及雷达频率约为12 MHz时,两个雷达的最佳密度分别显示为〜1.4×10〜5 cm〜(-3),〜1.8×10〜5cm〜(-3)和〜2.0×10冬季,春分和夏季分别为〜5cm〜(-3)。在白天,最佳密度增加(0.2-0.3)×10〜5 cm〜(-3)。在〜10 MHz的较低雷达频率下进行的观测表明,夜间所需的密度较小,约为0.3×10〜5 cm〜(-3)。发现在RB上回波检测时刻的最佳电场为5-25 mV / m,没有明显的阈值效应和任何季节依赖性。呈现的数据表明,对于回波检测,沿无线电波整个路径朝向散射体积的有利传播条件非常重要。

著录项

  • 来源
    《Radio Science》 |2014年第12期|1194-1205|共12页
  • 作者单位

    Institute of Space and Atmospheric Studies, University of Saskatchewan, Saskatoon, Saskatchewan, Canada;

    Institute of Space and Atmospheric Studies, University of Saskatchewan, Saskatoon, Saskatchewan, Canada;

    Institute of Space and Atmospheric Studies, University of Saskatchewan, Saskatoon, Saskatchewan, Canada;

    Department of Physics, University of New Brunswick, Fredericton, New Brunswick, Canada;

    Department of Physics, University of New Brunswick, Fredericton, New Brunswick, Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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