Latitudinal amplitude-phase structure of MHD waves: STARE radar and image magnetometer observations and modeling

Author:

Пилипенко Вячеслав12,Pilipenko Vyacheslav34,Козырева Ольга12,Kozyreva Olga34,Федоров Евгений2,Fedorov Eugeny4,Успенский Михаил5,Uspensky Mikhail6,Кауристи Кирсти5,Kauristie Kirsti6

Affiliation:

1. Институт космических исследований

2. Институт физики Земли им. О.Ю. Шмидта РАН

3. Space Research Institute

4. Schmidt Institute of Physics of the Earth, RAS

5. Финский метеорологический институт

6. Finnish Meteorological Institute

Abstract

We have developed a numerical model that yields a steady-state distribution of field components of MHD wave in an inhomogeneous plasma box simulating the realistic magnetosphere. The problem of adequate boundary condition at the ionosphere–magnetosphere interface for coupled MHD mode is considered. To justify the model’s assumptions, we have derived the explicit inequality showing when the ionospheric inductive Hall effect can be neglected upon the consideration of Alfven wave reflection from the ionospheric boundaries. The model predicts a feature of the ULF spatial amplitude/phase distribution that has not been noticed by the field line resonance theory: the existence of a region with opposite phase delays on the source side of the resonance. This theoretical prediction is supported by the amplitude-phase latitudinal structures of Pc5 waves observed by STARE radar and IMAGE magnetometers. A gradual decrease in azimuthal wave number m at smaller L-shells was observed at longitudinally separated radar beams.

Publisher

Infra-M Academic Publishing House

Subject

Space and Planetary Science,Atmospheric Science,Geophysics

Reference43 articles.

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