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Sökning: WFRF:(Turpin Williams) > (2007-2009) > Evidence for a sola...

Evidence for a solar cycle influence on the infrared energy budget and radiative cooling of the thermosphere

Mlynczak, Martin G. (författare)
NASA Langley Research Center, Hampton
Martin-Torres, Javier (författare)
Analytical Services and Materials Inc., Hampton
Marshall, B. Thomas (författare)
G & A Technical Software, Newport News
visa fler...
Thompson, R. Earl (författare)
G & A Technical Software, Newport News
Joshua, Williams (författare)
Department of Electrical and Computer Engineering, Utah State University, Logan
Turpin, Timothy (författare)
Department of Electrical and Computer Engineering, Utah State University, Logan
Kratz, David P. (författare)
NASA Langley Research Center, Hampton
III, James M. Russell (författare)
Center for Atmospheric Sciences, Hampton University
Woods, Tom (författare)
Laboratory for Atmospheric and Space Physics, University of Colorado, Boulder, Colorado
Gordley, Larry L. (författare)
G & A Technical Software, Newport News
visa färre...
NASA Langley Research Center, Hampton Analytical Services and Materials Inc, Hampton (creator_code:org_t)
2007
2007
Engelska.
Ingår i: Journal of Geophysical Research - Space Physics. - 2169-9380 .- 2169-9402. ; 112:A12
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • We present direct observational evidence for solar cycle influence on the infrared energy budget and radiative cooling of the thermosphere. By analyzing nearly five years of data from the Sounding of the Atmosphere using Broadband Emission Radiometry (SABER) instrument, we show that the annual mean infrared power radiated by the nitric oxide (NO) molecule at 5.3 μm has decreased by a factor of 2.9. This decrease is correlated (r = 0.96) with the decrease in the annual mean F10.7 solar index. Despite the sharp decrease in radiated power (which is equivalent to a decrease in the vertical integrated radiative cooling rate), the variability of the power as given in the standard deviation of the annual means remains approximately constant. A simple relationship is shown to exist between the infrared power radiated by NO and the F10.7 index, thus providing a fundamental relationship between solar activity and the thermospheric cooling rate for use in thermospheric models. The change in NO radiated power is also consistent with changes in absorbed ultraviolet radiation over the same time period. Computations of radiated power using an empirical model show much less variability than observed by SABER.

Ämnesord

TEKNIK OCH TEKNOLOGIER  -- Maskinteknik -- Rymd- och flygteknik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Mechanical Engineering -- Aerospace Engineering (hsv//eng)

Nyckelord

Atmospheric science
Atmosfärsvetenskap

Publikations- och innehållstyp

ref (ämneskategori)
art (ämneskategori)

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