HR: 10:20h
AN: AE52A-01 INVITED [Abstracts]
TI: Successes and Problems of Conventional Breakdown Theory of Sprites
AU: * Pasko, V P
EM: vpasko@psu.edu
AF: Penn State University, 211B EE East, University Park, PA 16802
United States
AB:
Sprite phenomenon is one of the most frequently observed forms of transient luminous events occurring at mesospheric/lower
ionospheric altitudes, which is directly related to the lightning activity in underlying thunderstorms [Sentman et al., GRL,
22, 1205, 1995]. In this talk we will provide overview of conventional breakdown theory of sprites, which is build on
original ideas advanced by C.T.R. Wilson [Wilson, Proc. Phys. Soc. Lond., 37, 32D, 1925]. We will discuss similarity
properties of electrical discharges as a function of gas pressure and a selected set of results of recent laboratory studies
of filamentary channels of ionization (termed streamers) [e.g., van Veldhuizen et al., IEEE Trans. Plasma Sci., 30, 162,
2002; Yi and Williams, J. Phys. D. Appl. Phys., 35, 205, 2002], which are directly applicable for understanding of high
spatial resolution imagery of sprites revealing many internal filamentary features with transverse spatial scales ranging
from tens to a few hundreds of meters [Gerken and Inan, JASTP, 65, 567, 2003]. The specific set of features, which can be
successfully explained by existing conventional theory of sprites and which we will discuss in this talk, include: (1) sprite
halos [Barrington-Leigh et al., 106, 1741, 2001]; (2) the observed diffuse and streamer regions of sprites [Pasko and
Stenbaek-Nielsen, GRL, 29, 1440, doi:10.1029/2001GL014241, 2002]; (3) the observed ELF radiation from sprites [Cummer et al.,
GRL, 25, 1281, 1998; Pasko et al., GRL, 25, 3493, 1998]; (4) the observed spatial transverse scales of streamers in sprites;
(5) the observed high-speed vertical development of sprites; and (6) the detections of short bursts of blue emissions from
sprites (see [Liu and Pasko, JGR, 109, A04301, doi:10.1029/2003JA010064, 2004] for experimental references and recent
modeling results pertaining to items (4), (5) and (6)). The talk will be concluded with a discussion of a set of unsolved
problems in exiting sprite theory, which include: (1) the initiation of sprite streamers in low applied electric fields; (2)
the minimum fields required for propagation of sprite streamers; (3) the branching mechanisms of sprite streamers; (4) the
neutral gas heating in sprites; (5) the thermal runaway electrons associated with sprite streamers.
UR: http://www.bath.ac.uk/~eesmf/SUMMER/MS/pasko-lecture.pdf; pasko-tutorial.pdf
DE: 3324 Lightning
DE: 2427 Ionosphere/atmosphere interactions (0335)
DE: 2435 Ionospheric disturbances
DE: 3304 Atmospheric electricity
DE: 0310 Airglow and aurora
SC: Atmospheric and Space Electricity [AE]
MN: 2004 AGU Fall Meeting