FastFind »   Lastname: doi:10.1029/ Year: Advanced Search  

Geophysical Monograph Series

 

Keywords

  • equatorial ionosphere
  • plasma instability
  • nonlinearity
  • equatorial plasma bubble
  • scintillation

Index Terms

  • 2471 Ionosphere: Plasma waves and instabilities
  • 2415 Ionosphere: Equatorial ionosphere
  • 2439 Ionosphere: Ionospheric irregularities
  • 4420 Nonlinear Geophysics: Chaos

Article

GEOPHYSICAL MONOGRAPH SERIES, VOL. 196, PP. 279-292, 2012

Development of Intermediate-Scale Structure in the Nighttime Equatorial Ionosphere

A. Bhattacharyya

Equatorial plasma bubbles (EPBs), a phenomenon observed in the nighttime equatorial ionosphere, are an important component of space weather. EPBs are associated with irregularities of the ionospheric plasma that span a large range of scale sizes of which the intermediate-scale size (∼100 m to a few kilometers) irregularities are capable of scattering incident radio waves of VHF and higher frequencies to produce a pattern of varying signal amplitude and phase, as the signal propagates to a ground receiver. Movement of the irregularities across the signal path causes the amplitude and phase of the signal recorded by a receiver to undergo temporal fluctuations or scintillations, which can adversely affect the operation of satellite-based communication and navigation systems. EPBs occur because of the growth of a generalized Rayleigh-Taylor instability on the bottomside of the nighttime equatorial ionosphere, and nonlinear development of the instability depends on ambient ionospheric conditions. As the severity of signal degradation depends on the strength as well as the spectrum of the irregularities, it is of great interest to identify the ambient ionospheric conditions that determine the complexity of structures generated by the instability. This chapter presents the current status of our understanding of this problem based on observations and theoretical models, with an emphasis on scintillation-producing intermediate-scale irregularities in the postsunset equatorial ionosphere, as intense scintillations are indicative of an extreme phenomenon in the Earth's ionosphere.

Citation: Bhattacharyya, A. (2012), Development of intermediate-scale structure in the nighttime equatorial ionosphere, in Extreme Events and Natural Hazards: The Complexity Perspective, Geophys. Monogr. Ser., vol. 196, edited by A. S. Sharma et al. 279–292, AGU, Washington, D. C., doi:10.1029/2011GM001078.

Cited By

Please wait one moment ...