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Solar activity influence on climatic variations of stratosphere and mesosphere in mid-latitudesThe direct modulation of temperature of the mid-latitude mesosphere by the solar-cycle EUV variation, which leads to greater heat input at higher solar activity, is well established. Middle atmosphere temperature modulation by the solar cycle is independently confirmed by the variation of reflection heights of low frequency radio waves in the lower ionosphere, which are regularly monitored over about 30 years. As explained elsewhere in detail, these reflection heights depend on the geometric altitude of a certain isobaric surface (near 80 k), and on the solar ionizing Lyman-alpha radiation flux. Knowing the solar cycle variation of Lyman-alpha how much the measured reflection heights would be lowered with the transition from solar minimum to maximum can be calculated, if the vertical baric structure of the neutral atmosphere would remain unchanged. An discrepancy between expected and observed height change must be explained by an uplifting of the isobaric level from solar minimum to maximum, caused by the temperature rise in the mesosphere. By integrating the solar cycle temperature changes over the height region of the middle atmosphere, and assuming that the lower boundary (tropopause) has no solar cycle variation, the magnitude of this uplifting can be estimated. It is given for the Lidar-derived and for the rocket-measured temperature variations. Comparison suggests that the real amplitude of the solar cycle temperature variation in the mesosphere is underestimated when using the rocket data, but probably overestimated with the Lidar data.
Document ID
19900018853
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Taubenheim, J.
(Academy of Sciences Berlin (German D.R.)., United States)
Entzian, G.
(Academy of Sciences Berlin (German D.R.)., United States)
Voncossart, G.
(Academy of Sciences Berlin (German D.R.)., United States)
Date Acquired
September 6, 2013
Publication Date
September 1, 1989
Publication Information
Publication: International Council of Scientific Unions, Middle Atmosphere Program. Handbook for MAP, Volume 29. Part 1: Extended Abstracts, International Symposium on Solar Activity Forcing of the Middle Atmosphere. Part 2: MASH Workshop, Williamsburg, 1986
Subject Category
Meteorology And Climatology
Accession Number
90N28169
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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