Further development of the method proposed by Danilov and Mikhailov is presented. The method is applied to reveal the foF2 long-term trends on 30 Northern Hemisphere ionosonde stations. Most of them show significant foF2 trends. A pronounced dependence of trend magnitude on geomagnetic (invariant) latitude is confirmed. Periods of negative/positive foF2 trends corresponding to the periods of long-term increasing/decreasing geomagnetic activity are revealed for the first time. Pronounced diurnal variations of the foF2 trend magnitude are found. Strong positive foF2 trends in the post-midnight-early-morning LT sector and strong negative trends during daytime hours are found on the sub-auroral stations for the period with increasing ...
Abstract. The analysis of the f oF2 ionosonde data ac-quired at mid and high latitudes reveals a gen...
A detailed analysis of the f oF2 data at the Sverdlovsk station is performed to answer the questio...
Abstract The long-term behaviour of the plasma frequency of the F2 layer, foF2, is investigated...
International audienceFurther development of the method proposed by Danilov and Mikhailov is present...
Earlier revealed morphological features of the foF2 and hmF2 long-term trends are interpreted in...
International audienceEarlier revealed morphological features of the foF2 and hmF2 long-term trends ...
A long-term trend in the F2-layer critical frequency (foF2) has been distinguished based on daytime ...
A previous approach to the ionospheric long-term trend analysis has been applied to the foF1 observ...
A relationship between foE trends and geomagnetic activity long-term variations has been revealed ...
A long-term trend in the F2-layer critical frequency (foF2) has been distinguished based on daytime ...
A detailed analysis of the foF2 data at a series of ionospheric stations is performed to reveal ...
A long-term trend in the F2-layer critical frequency (foF2) has been distinguished based on daytime ...
A long-term trend in the F2-layer critical frequency (foF2) has been distinguished based on daytime ...
A new approach to extract foF2 long-term trends, which are free to a great extent from solar and g...
Abstract. A previous approach to the ionospheric long-term trend analysis has been applied to the fo...
Abstract. The analysis of the f oF2 ionosonde data ac-quired at mid and high latitudes reveals a gen...
A detailed analysis of the f oF2 data at the Sverdlovsk station is performed to answer the questio...
Abstract The long-term behaviour of the plasma frequency of the F2 layer, foF2, is investigated...
International audienceFurther development of the method proposed by Danilov and Mikhailov is present...
Earlier revealed morphological features of the foF2 and hmF2 long-term trends are interpreted in...
International audienceEarlier revealed morphological features of the foF2 and hmF2 long-term trends ...
A long-term trend in the F2-layer critical frequency (foF2) has been distinguished based on daytime ...
A previous approach to the ionospheric long-term trend analysis has been applied to the foF1 observ...
A relationship between foE trends and geomagnetic activity long-term variations has been revealed ...
A long-term trend in the F2-layer critical frequency (foF2) has been distinguished based on daytime ...
A detailed analysis of the foF2 data at a series of ionospheric stations is performed to reveal ...
A long-term trend in the F2-layer critical frequency (foF2) has been distinguished based on daytime ...
A long-term trend in the F2-layer critical frequency (foF2) has been distinguished based on daytime ...
A new approach to extract foF2 long-term trends, which are free to a great extent from solar and g...
Abstract. A previous approach to the ionospheric long-term trend analysis has been applied to the fo...
Abstract. The analysis of the f oF2 ionosonde data ac-quired at mid and high latitudes reveals a gen...
A detailed analysis of the f oF2 data at the Sverdlovsk station is performed to answer the questio...
Abstract The long-term behaviour of the plasma frequency of the F2 layer, foF2, is investigated...