Comparison of Very Low Frequency Wave Intensities Measured by a Low-Altitude Spacecraft and on the Ground

IF 2.6 2区 地球科学 Q2 ASTRONOMY & ASTROPHYSICS
F. Němec, K. Drastichová, J. Manninen, C. Martinez-Calderon, K. Shiokawa, M. Connors
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引用次数: 0

Abstract

We evaluate average wave intensities at frequencies up to 10 kHz measured by two ground stations in Canada and two others in Finland at auroral and subauroral latitudes over a full year, as well as by the low-altitude DEMETER spacecraft during the years 2004–2010. Lightning location and energy data obtained by the World Wide Lightning Location Network, along with geomagnetic activity characterized by the Kp index, are further used. Latitudinal, diurnal, and annual variations are analyzed, and the global intensities measured on the ground and by the spacecraft are systematically compared for the first time. We show that lightning-generated waves often dominate the measured wave intensities, particularly during the night, in summer, and at higher frequencies. DEMETER observations, supported by ray-tracing analysis, reveal a significant role of nonducted lightning-generated whistler propagation between the hemispheres. Finally, the wave intensity response to geomagnetic activity variations is quite different on the ground compared to in space. While spacecraft-measured wave intensities are considerably larger during periods of enhanced geomagnetic activity, the ground-based intensities are only sporadically enhanced during geomagnetically active periods.

Abstract Image

低空航天器和地面测量的甚低频波强度比较
我们评估了加拿大的两个地面站和芬兰的另外两个地面站在极光纬度和副极光纬度全年测得的频率高达 10 kHz 的平均波强度,以及低空 DEMETER 航天器在 2004-2010 年期间测得的平均波强度。此外,还使用了世界闪电定位网络获得的闪电位置和能量数据,以及以 Kp 指数为特征的地磁活动。分析了纬度、日变化和年变化,并首次系统地比较了地面和航天器测量的全球强度。结果表明,雷电产生的波往往在测量到的波强度中占主导地位,尤其是在夜间、夏季和频率较高的时候。在射线追踪分析的支持下,DEMETER 的观测结果揭示了非传导闪电产生的啸声在半球之间传播的重要作用。最后,地磁活动变化引起的波强响应在地面上与在太空中截然不同。在地磁活动增强期间,航天器测量到的波强度要大得多,而在地磁活跃期间,地面波强度只是零星增强。
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来源期刊
Journal of Geophysical Research: Space Physics
Journal of Geophysical Research: Space Physics Earth and Planetary Sciences-Geophysics
CiteScore
5.30
自引率
35.70%
发文量
570
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