THE SUNSPOT CYCLE AND AURORAL F-LAYER IRREGULARITIES

被引:7
作者
AARONS, J
KERSLEY, L
RODGER, AS
机构
[1] UNIV COLL WALES,ABERYSTWYTH,DYFED,WALES
[2] BRITISH ANTARCTIC SURVEY,CAMBRIDGE,ENGLAND
关键词
D O I
10.1029/94RS03191
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
The use of the word ''aurora'' for many different observations at high latitudes has limited the concepts involved; this is particularly true for F region irregularities. Observations setting the position of the auroral oval (Starkov and Fel'dshtein, 1970) were made using primarily the 555.7-nm green line, which is emitted predominantly at E layer heights. These observations have shown that the change in position of the auroral oval for low values of Kp as a function of sunspot cycle is of the order of 1 degrees to 2 degrees between sunspot maximum and sunspot minimum. However, irregularities in the F region show much larger solar cycle variations in the locations of the equatorward boundary, typically 10 degrees. A review of scintillation data indicates that at a given auroral latitude, the scintillation activity increases with sunspot number. In addition, for a constant scintillation intensity, the equatorward boundary moves to lower latitudes as sunspot maximum is approached. We review existing spread F studies and show that for quiet geomagnetic conditions, there is lower occurrence during years of low sunspot numbers than during years of high sunspot numbers. However, the spread F index, related to Delta f/f(0)F(2), is higher during years of low sunspot number than during years of high sunspot number. We demonstrate that this apparent dichotomy can be reconciled by using a new method of normalizing the spread F index by the maximum electron concentration of the F layer. We briefly discuss the possible explanations for the observed solar cycle variations of irregularity occurrence in terms of the absolute values and gradients of electron concentration and the E region conductivity.
引用
收藏
页码:631 / 638
页数:8
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