HR: 1330h
AN: AE42A-0787 [PDF]
TI: Role of the EMP and the QE field processes in the generation of columniform sprites
AU: * Adachi, T
EM: adachi@pat.geophys.tohoku.ac.jp
AF: Graduate School of Science, Tohoku University, Aramaki-aoba, Aoba-ku, Sendai, Miyagi, 980-8578
Japan
AU: Fukunishi, H
EM: fuku@pat.geophys.tohoku.ac.jp
AF: Graduate School of Science, Tohoku University, Aramaki-aoba, Aoba-ku, Sendai, Miyagi, 980-8578
Japan
AU: Takahashi, Y
EM: yukihiro@pat.geophys.tohoku.ac.jp
AF: Graduate School of Science, Tohoku University, Aramaki-aoba, Aoba-ku, Sendai, Miyagi, 980-8578
Japan
AU: Sato, M
EM: msato@pat.geophys.tohoku.ac.jp
AF: Graduate School of Science, Tohoku University, Aramaki-aoba, Aoba-ku, Sendai, Miyagi, 980-8578
Japan
AB:
Sprites are transient luminous events at the altitude of the mesosphere induced by cloud-to-ground lightning discharges
(CGs). Recent observations revealed that sprites consist of two portions: sprite halo which is a diffuse glow occurring at
the altitude from 70
to 85 km, and sprite streamers which include fine structures extending downward from the bottom of the sprite halo. It is
suggested that the quasi-electrostatic (QE) field induced by CGs is an essential source for producing both the sprite halo
and the sprite streamers. Recent electrodynamic models of the sprite halo have reproduced the spatial and temporal evolution
of the halo obtained from optical observations. However, the evolution of the sprite streamer region has not be reproduced by
computer simulation, and it is suggested that there are other important factors in addition to the QE field for their
generation.
To clarify the important factors related to the generation of the sprite streamers, we investigated the role of the
electromagnetic pulse (EMP) radiated from parent CG. We analyzed sprite image data and ELF sferics data obtained in the
wintertime sprite campaign conducted in Japan. In the campaign, we observed 51 columniform sprites of which streamer region
is characterized by long vertical columns. We compared the structures of columniform sprites and the characteristics of
parent +CGs obtained by Franklin Japan Corporation and Tokyo Electric Power Corporation. It is found that the peak current of
+CGs is correlated to the number of sprite columns while the charge moment of +CGs is correlated to the vertical length of
sprite columns. From these results, we suggest that +CGs with large peak current values make a precondition for the
generation of sprite streamers by radiating strong electromagnetic pulses. On the other hand, +CGs with large charge moment
values induce strong QE field above the parent thunderstorm system that can produce sprite columns with long vertical
lengths.
DE: 0341 Middle atmosphere--constituent transport and chemistry (3334)
DE: 3304 Atmospheric electricity
DE: 3324 Lightning
SC: Atmospheric and Space Electricity [AE]
MN: 2003 Fall Meeting