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首页> 外文期刊>Journal of geophysical research. Planets >Whistler mode waves from lightning on Venus: Magnetic control of ionospheric access
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Whistler mode waves from lightning on Venus: Magnetic control of ionospheric access

机译:来自金星上闪电的吹口哨模式波:电离层通道的电磁控制

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The fluxgate magnetometer on Venus Express samples the magnetic field nearperiapsis at 128 Hz. Bursts of plane-polarized magnetic waves in the vicinity of 100 I lz arc observed propagating at small angles to the magnetic field. The magnetic field is generally horizontal in the region around periapsis, located at high northern latitudes. When the magnetic field remains within 15° of horizontal during the 2-min periapsis pass, no such waves are observed; but when there arc brief periods during which the local magnetic field dips into the atmosphere by more than 15°, the bursts begin to appear. Such radial excursions of the magnetic field occur 25% of the time in the region around periapsis. The bursts are seen only on passes with these excursions. We interpret this magnetic control in terms of the coupling between the electromagnetic wave from lightning discharges refracted vertically by the increasing electron density and the nearly horizontal ionospheric magnetic field along which the energy is guided to the spacecraft. The inferred rate of electric discharges in the Venus atmosphere is about 20% of that seen in the Earth's atmosphere.
机译:Venus Express上的磁通门磁力计会以128 Hz的频率对接近磁极的磁场进行采样。观察到在100 I lz附近爆发的平面极化电磁波以与磁场成小角度传播。磁场在位于北纬高纬度的围手术期周围的区域中通常是水平的。在2分钟的根尖周通行期间,当磁场保持在水平线的15度以内时,则不会观察到此类波。但是当出现短暂的局部磁场向大气层倾斜超过15°的时间时,就会开始出现爆发。磁场的这种径向偏移发生在根尖周围的区域中的时间占25%。这些短途旅行只有在通行证中才能看到。我们根据在垂直方向上因电子密度增加而折射的雷电放电产生的电磁波与近乎水平的电离层磁场之间的耦合来解释这种磁控制,能量沿着该电离层磁场被引导至航天器。在金星大气中推断出的放电率大约是地球大气中所见的放电率的20%。

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