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A 9auploaded message finds charcoal opportunities family project in Domain Insights. Res-Space Phys. Onsager, T. Reconnection at the high-latitude magnetopause during northward interplanetary magnetic field conditions. A numerical study of solar wind—magnetosphere interaction for northward interplanetary magnetic field.
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Li, W. Plasma sheet formation during long period of northward IMF. Solar wind plasma entry into the magnetosphere under northward IMF conditions. Woch, J. Temporal magnetosheath plasma injection observed with Viking: a case study. Hydrospheres Space Sci. Signatures of transient boundary layer processes observed with Viking.
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Hasegawa, H. Miura, A. Anomalous transport by magnetohydrodynamic Kelvin-Helmholtz instabilities in the solar wind-magnetosphere interaction. Olson, W. Magnetospheric responses to the gradient drift entry of solar wind plasma. McPherron, R. Haaland, S. Plasma transport in the magnetotail lobes. Phan, T. Balogh, A. The cluster magnetic field investigation: overview of in-flight performance and initial results. Reme, H.
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Johnstone, A. PEACE: a plasma electron and current experiment. Yau, A.
Source of ion outflow in the high latitude ionosphere. Shi, Q. Cluster observations of the entry layer equatorward of the cusp under northward interplanetary magnetic field. Angelopoulos, V. Statistical characteristics of bursty bulk flow events. Gosling, J. Observations of reconnection of interplanetary and lobe magnetic field lines at the high-latitude magnetopause.
Lavraud, B. Characteristics of the magnetosheath electron boundary layer under northward interplanetary magnetic field: implications for high-latitude reconnection. Lobe cell convection as a summer phenomenon. Hwang, K. The first in situ observation of Kelvin-Helmholtz waves at high-latitude magnetopause during strongly dawnward interplanetary magnetic field conditions.
Impulsive penetration of filamentary plasma elements into the magnetospheres of the Earth and Jupiter. Bogdanova, Y. Cluster observations of the magnetospheric low-latitude boundary layer and cusp during extreme solar wind and interplanetary magnetic field conditions: II. Pilipp, W. Formation of plasma sheet resulting from plasma mantle dynamics.
Frey, H. Download references. We are grateful to A. Du, D.
Turner, Y. Ge, P. Escoubet and H. Hasegawa for their helpful discussions. Correspondence to Q. Reprints and Permissions. Science China Technological Sciences Progress in Earth and Planetary Science Journal of Geophysical Research: Space Physics Space Science Reviews By submitting a comment you agree to abide by our Terms and Community Guidelines.
If you find something abusive or that does not comply with our terms or guidelines please flag it as inappropriate. Advanced search. Skip to main content. Subjects Atmospheric science Magnetospheric physics. Abstract An understanding of the transport of solar wind plasma into and throughout the terrestrial magnetosphere is crucial to space science and space weather. Figure 1: Solar wind entry regions in the high-latitude terrestrial magnetosphere as detected by Cluster. Full size image.