HR: 15:25h
AN: SM43D-08 [Abstracts]
TI: Turbulence in the high-altitude cusp: Cluster FGM and STAFF observations
AU: * Nykyri, K
EM: k.nykyri@ic.ac.uk
AF: The Blackett Laboratory, Imperial College, Prince Consort road, London, SW72BZ
United Kingdom
AU: Grison, B
EM: Benjamin.Grison@cetp.ipsl.fr
AF: CETP/CNRS-UVSQ, 10/12 Avenue de l Europe, Vélizy, 78140
France
AU: Cargill, P
EM: p.cargill@imperial.ac.uk
AF: The Blackett Laboratory, Imperial College, Prince Consort road, London, SW72BZ
United Kingdom
AU: Lavraud, B
EM: Benoit.Lavraud@cesr.fr
AF: Los Alamos National Laboratory, P.O. Box 1663, MSD466, Los Alamos, NM 87545
United States
AU: Lucek, E
EM: e.lucek@imperial.ac.uk
AF: The Blackett Laboratory, Imperial College, Prince Consort road, London, SW72BZ
United Kingdom
AU: Dandouras, I
EM: Iannis.Dandouras@cesr.fr
AF: Centre d'Etude Spatiale des Rayonnements, Toulouse Cedex 4, Toulouse, 31028
France
AU: Balogh, A
EM: a.balogh@ic.ac.uk
AF: The Blackett Laboratory, Imperial College, Prince Consort road, London, SW72BZ
United Kingdom
AU: Cornilleau-Wehrlin, N
EM: nicole.cornilleau@cetp.ipsl.fr
AF: CETP/CNRS-UVSQ, 10/12 Avenue de l Europe, Vélizy, 78140
France
AU: Reme, H
EM: henri.reme@cesr.fr
AF: Centre d'Etude Spatiale des Rayonnements, Toulouse Cedex 4, Toulouse, 31028
France
AB:
High-resolution magnetic field data from Cluster Flux Gate Magnetometer (FGM) and the Spatio-Temporal Analysis of Field
Fluctuations (STAFF) instruments are used to study turbulent magnetic field fluctuations during the high-altitude cusp
crossing on 17th of March 2001. Despite the quiet solar wind conditions, the cusp was filled with magnetic field turbulence
whose power correlates with sheared field-aligned plasma number flux. The slopes of the magnetic field wave power spectra are
evaluated throughout the crossing and examples are found of magnetic field wave spectra with inertial range and dissipation
range. The break between the ranges usually occurred in the vicinity of the local ion cyclotron frequency, indicating that
the energy dissipation due to kinetic processes started at this frequency.However, intervals where the break was observed at
lower and higher frequencies were also found. Sometimes strong peaks in the wave power close to local ion cyclotron frequency
were observed, with secondary peaks at harmonics indicative of resonant processes between protons and the waves. We show
that the observed frequency for the onset of the dissipation range can be calculated from the dispersion relation for kinetic
Alfven waves (including finite Larmor radius and finite frequency effects), provided the parallel wavelength is in the range
of 40-1500 km, which in turn implies very oblique propagation angles.
DE: 2706 Cusp
DE: 2724 Magnetopause and boundary layers
DE: 7839 Nonlinear phenomena (4400, 6944)
DE: 7863 Turbulence (4490)
DE: 7867 Wave/particle interactions (2483, 6984)
SC: SPA-Magnetospheric Physics [SM]
MN: Fall Meeting 2005