TY - JOUR
T1 - A theoretical and empirical study of the response of the high latitude thermosphere to the sense of the "Y" component of the interplanetary magnetic field
AU - Rees, D.
AU - Fuller-Rowell, T. J.
AU - Gordon, R.
AU - Smith, M. F.
AU - Maynard, N. C.
AU - Heppner, J. P.
AU - Spencer, N. W.
AU - Wharton, L.
AU - Hays, P. B.
AU - Killeen, T. L.
N1 - Funding Information:
Acknuwke@mentsi-sI ta pleasure to acknowledge the many discussions with Dr. D. Winningham and Dr. D. Evans relating to thestructure ofenergeticparticleprecipitation over the geomagnetic polar regions. The work at UCL was supported by grants from the U.K. Science and Engineering Research Council, and the grant of time on the CRAY 1-S of the University of London Computer Centre. The ground based Fabry--Perot interferometer at Kiruna was operated with the generous support of Kiruna Geophysical Institute, and the assistance of Ake Steen in particular with the observations is gratefulty acknowledge. We appreciate the provision of data on the IMF from iSEF-3 by Dr. Tsurtani (Dr E. J. Smith, Principal Investigator). N.C.M. was supported for much of this work at Goddard Space flight Center.
PY - 1986/1
Y1 - 1986/1
N2 - The strength and direction of the Interplanetary Magnetic Field (IMF) controls the transfer of solar wind momentum and energy to the high latitude thermosphere in a direct fashion. The sense of " Y" component of the IMF (BY) creates a significant asymmetry of the magnetospheric convection pattern as mapped onto the high latitude thermosphere and ionosphere. The resulting response of the polar thermospheric winds during periods when BY is either positive or negative is quite distinct, with pronounced changes in the relative strength of thermospheric winds in the dusk-dawn parts of the polar cap and in the dawn part of the auroral oval. In a study of four periods when there was a clear signature of BY, observed by the ISEE-3 satellite, with observations of polar winds and electric fields from the Dynamics Explorer-2 satellite and with wind observations by a ground-based Fabry-Perot interferometer located in Kiruna, Northern Sweden, it is possible to explain features of the high latitude thermospheric circulation using three dimensional global models including BY dependent, asymmetric, polar convection fields. Ground-based Fabry-Perot interferometers often observe anomalously low zonal wind velocities in the (Northern) dawn auroral oval during periods of extremely high geomagnetic activity when BY is positive. Conversely, for BY negative, there is an early transition from westward to southward and eastward winds in the evening auroral oval (excluding the effects of auroral substorms), and extremely large eastward (sunward) winds may be driven in the auroral oval after magnetic midnight. These observations are matched by the observation of strong anti-sunward polar-cap wind jets from the DE-2 satellite, on the dusk side with BY negative, and on the dawn side with BY positive.
AB - The strength and direction of the Interplanetary Magnetic Field (IMF) controls the transfer of solar wind momentum and energy to the high latitude thermosphere in a direct fashion. The sense of " Y" component of the IMF (BY) creates a significant asymmetry of the magnetospheric convection pattern as mapped onto the high latitude thermosphere and ionosphere. The resulting response of the polar thermospheric winds during periods when BY is either positive or negative is quite distinct, with pronounced changes in the relative strength of thermospheric winds in the dusk-dawn parts of the polar cap and in the dawn part of the auroral oval. In a study of four periods when there was a clear signature of BY, observed by the ISEE-3 satellite, with observations of polar winds and electric fields from the Dynamics Explorer-2 satellite and with wind observations by a ground-based Fabry-Perot interferometer located in Kiruna, Northern Sweden, it is possible to explain features of the high latitude thermospheric circulation using three dimensional global models including BY dependent, asymmetric, polar convection fields. Ground-based Fabry-Perot interferometers often observe anomalously low zonal wind velocities in the (Northern) dawn auroral oval during periods of extremely high geomagnetic activity when BY is positive. Conversely, for BY negative, there is an early transition from westward to southward and eastward winds in the evening auroral oval (excluding the effects of auroral substorms), and extremely large eastward (sunward) winds may be driven in the auroral oval after magnetic midnight. These observations are matched by the observation of strong anti-sunward polar-cap wind jets from the DE-2 satellite, on the dusk side with BY negative, and on the dawn side with BY positive.
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U2 - 10.1016/0032-0633(86)90100-5
DO - 10.1016/0032-0633(86)90100-5
M3 - Article
AN - SCOPUS:38249042441
SN - 0032-0633
VL - 34
SP - 1
EP - 40
JO - Planetary and Space Science
JF - Planetary and Space Science
IS - 1
ER -