首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Midlatitude propagation of VLF to MF waves through nighttime ionosphere above powerful VLF transmitters
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Midlatitude propagation of VLF to MF waves through nighttime ionosphere above powerful VLF transmitters

机译:中间纬度MF的甚低频电波传播夜间电离层强大的甚低频之上发射器

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Midlatitude nighttime observations made by the DEMETER satellite in the very low frequency (VLF) to medium frequency (MF) bands (3 kHz to 3 MHz) have demonstrated the propagation of radio waves from the bottom of ionosphere up to the satellite altitude (~700 km). Propagation characteristics derived from the magneto-ionic theory [Budden, ] are used to explain the absence of wave observations between ~1 and 2 MHz. Under hypotheses made for the Appleton and Hartree (or Appleton and Lassen) formula, studies of the vertical variations of the real and imaginary parts of the refractive index are performed to point out modifications in the propagation characteristics of the waves: (i) at the crossing of the plasma cutoffs regions, (ii) at the crossing of the ordinary and extraordinary mode resonance regions, and (iii) in the region where the product of the collision frequency (ν) and the electronic density (Ne) is maximum. It is shown that enhancements in the collision frequencies, produced by powerful VLF transmitters in the region where the product of ν and Ne is maximum, open the half angle of the MF wave transmission cones and increase the power densities of those waves at the DEMETER altitude. Key Points New region of VLF heating in the F-layer wave propagation controlled by transmission cones at the X=1 plasma cut-offs enhancements in collision frequencies open the transmission cones
机译:中间纬度的夜间观察得墨忒耳卫星在非常低的频率(甚低频)中频(MF)乐队(3千赫至3兆赫)证明了无线电波的传播吗从底部的电离层的卫星高度(~ 700公里)。来自磁离子理论(Budden,)是用来解释缺席的情况下波~ 1和2 MHz之间的观察。阿普尔顿和哈特里(或假设了阿普尔顿和拉森)公式,研究的垂直变化的真实和虚构的执行部分的折射率指出修改的传播波的特征:(i)在十字路口等离子体被切断的地区,(ii)穿越的普通和非凡的模式共振区域,和(3)在该地区碰撞频率的乘积(ν)和电子密度(Ne)是最大的。表明改进的碰撞频率,由强大的甚低频发射机的地区ν的产物和东北最大,打开MF的半角波传播锥和增加力量密度波的得墨忒耳的高度。重点新地区的甚低频加热电离层波传播所控制传播锥在X = 1等离子的否决增强碰撞频率打开传播锥

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