1990•Journal of geomagnetism and geoelectricityOpen access

A review of some recent work on mid-latitude spread-F occurrence as detected by ionosondes.

G. G. Bowman

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Abstract

The characteristics of mid-latitude spread-F occurrence are reviewed (in the light of some recent publications) in terms of four different scale sizes.The term "macroscale" has been used to describe significant height rises and electron -density depeetions which in general precede spread-F occurrence.TID wavetrains in the form of wavelike modulations of these height rises are termed "large-scale" structures.The experimental evidence suggests that off-vertical reflections from tilts associated with these wavetrains are responsible for the basic components of spread traces on ionograms.Also, it is proposed that "medium-scale" structures at the F2-layer level are a result of stratification effects, and finally that field-aligned irregularities which sometimes produce weak spread traces, be termed "small-scale" structures.Attention is drawn to the fact that structures similar to those proposed here for mid-latitude spread-F appear to be related to other phenomena in equatorial and sub-auroral zone regions.It is suggested that the breaking of atmospheric gravity waves has a central role to play in the development of these mid-latitude spread-F structures.A Review of Some Recent Work on Mid-Latitude Spread-F Occurrence 115

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The characteristics of mid-latitude spread-F occurrence are reviewed (in the light of some recent publications) in terms of four different scale sizes.The term "macroscale" has been used to describe significant height rises and electron -density depeetions which in general precede spread-F occurrence.TID wavetrains in the form of wavelike modulations of these height rises are termed "large-scale" structures.The experimental evidence suggests that off-vertical reflections from tilts associated with these wavetrains are responsible for the basic components of spread traces on ionograms.Also, it is proposed that "medium-scale" structures at the F2-layer level are a result of stratification effects, and finally that field-aligned irregularities which sometimes produce weak spread traces, be termed "small-scale" structures.Attention is drawn to the fact that structures similar to those proposed here for mid-latitude spread-F appear to be related to other phenomena in equatorial and sub-auroral zone regions.It is suggested that the breaking of atmospheric gravity waves has a central role to play in the development of these mid-latitude spread-F structures.A Review of Some Recent Work on Mid-Latitude Spread-F Occurrence 115

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Available abstract

The characteristics of mid-latitude spread-F occurrence are reviewed (in the light of some recent publications) in terms of four different scale sizes.The term "macroscale" has been used to describe significant height rises and electron -density depeetions which in general precede spread-F occurrence.TID wavetrains in the form of wavelike modulations of these height rises are termed "large-scale" structures.The experimental evidence suggests that off-vertical reflections from tilts associated with these wavetrains are responsible for the basic components of spread traces on ionograms.Also, it is proposed that "medium-scale" structures at the F2-layer level are a result of stratification effects, and finally that field-aligned irregularities which sometimes produce weak spread traces, be termed "small-scale" structures.Attention is drawn to the fact that structures similar to those proposed here for mid-latitude spread-F appear to be related to other phenomena in equatorial and sub-auroral zone regions.It is suggested that the breaking of atmospheric gravity waves has a central role to play in the development of these mid-latitude spread-F structures.A Review of Some Recent Work on Mid-Latitude Spread-F Occurrence 115

Key concepts: Latitude, Geology, Stratification (seeds), Low latitude, Middle latitudes, Geophysics, Scale (ratio), High latitude

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