Magnetospheric Cusps: Structure and Dynamics (eBook)

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2006 | 2005
VI, 414 Seiten
Springer Netherlands (Verlag)
978-1-4020-3605-7 (ISBN)

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(a) Professor Theodore A. Fritz works in the area of planetary magnetospheres and possible Sun-Earth relations. His particular research interests include energetic charged particles, their composition, and the mechanisms by which they are transported and energized within magnetospheres. He has participated either as a Principal Investigator or Co-Investigator in about 20 spaceflight projects such as the International Sun-Earth Explorer 1&2 (ISEE 1&2), the NASA Galileo mission orbiting Jupiter, the NASA Global Geospace Science Polar satellite mission, and the joint European Space Agency/NASA four satellite Cluster mission. In addition to these ongoing data analysis efforts, he is also involved in the development of new or novel instrumentation for use in space to measure these energetic charged particles and in the teaching and supervision of student researchers.

(b) Dr. Shing F. Fung is a Space Scientist at the NASA Goddard Space Flight Center, Greenbelt, Maryland, USA. His main research interests are space plasma physics and physics of planetary magnetospheres. He has extensive experience in analyzing space physics data (plasma, magnetic and electric field, wave, and energetic particle) in order to study and model magnetospheric structures and processes. In addition to data analysis and modelling efforts, Dr Fung is also involved in the development of magnetospheric radio-sounding techniques as recently implemented in the radio plasma imager (RPI) on the NASA IMAGE satellite, and in the development of new generation magnetospheric state-based radiation belt models.

(a) Professor Theodore A. Fritz works in the area of planetary magnetospheres and possible Sun-Earth relations. His particular research interests include energetic charged particles, their composition, and the mechanisms by which they are transported and energized within magnetospheres. He has participated either as a Principal Investigator or Co-Investigator in about 20 spaceflight projects such as the International Sun-Earth Explorer 1&2 (ISEE 1&2), the NASA Galileo mission orbiting Jupiter, the NASA Global Geospace Science Polar satellite mission, and the joint European Space Agency/NASA four satellite Cluster mission. In addition to these ongoing data analysis efforts, he is also involved in the development of new or novel instrumentation for use in space to measure these energetic charged particles and in the teaching and supervision of student researchers. (b) Dr. Shing F. Fung is a Space Scientist at the NASA Goddard Space Flight Center, Greenbelt, Maryland, USA. His main research interests are space plasma physics and physics of planetary magnetospheres. He has extensive experience in analyzing space physics data (plasma, magnetic and electric field, wave, and energetic particle) in order to study and model magnetospheric structures and processes. In addition to data analysis and modelling efforts, Dr Fung is also involved in the development of magnetospheric radio-sounding techniques as recently implemented in the radio plasma imager (RPI) on the NASA IMAGE satellite, and in the development of new generation magnetospheric state-based radiation belt models.

Preface.- Cluster Observations of the Cusp: Magnetic Structure and Dynamics.- Magion-4 High-Altitude Cusp Study.- High-Altitude Cusp: The Extremely Dynamic Region in Geospace.- Magnetosheath Interaction with the high Latitude Magnetopause.- Cluster Observes the High-Altitude Cusp Region.- Low-Frequency Plasma Waves in the Outer Polar Cusp: A Review of Observations from Prognoz 8, Interball 1, Magion 4, and Cluster.- Multiple Flux Rope Events at the High-Latitude Magnetopause: Cluster/Rapid Observation on 26 January, 2001.- Energetic Electrons as a Field Line Topology Tracer in the High Latitude Boundary/Cusp Region: Cluster Rapid Observations.- Energetic Particles Observed in the Cusp Region During a Storm Recovery Phase.- Coupling the Solar-Wind/IMF to the Ionosphere Through the high Latitude Cusps.- Spatial and Temporal Cusp Structures Observed by Multiple Spacecraft and Ground Based Observations.- Observations of a Unique Cusp Signature at Low and Mid Altitudes.- Cusp Modeling and Observations at Low Altitude.- Simulation Studies of High-Latitude Magnetospheric Boundary Dynamics.- Cusp Geometry in MHD Simulations.- The Magnetospheric Cusps: A Summary.

Erscheint lt. Verlag 23.2.2006
Zusatzinfo VI, 414 p.
Verlagsort Dordrecht
Sprache englisch
Themenwelt Naturwissenschaften Biologie Ökologie / Naturschutz
Naturwissenschaften Geowissenschaften Geophysik
Naturwissenschaften Physik / Astronomie Angewandte Physik
Naturwissenschaften Physik / Astronomie Astronomie / Astrophysik
Naturwissenschaften Physik / Astronomie Atom- / Kern- / Molekularphysik
Naturwissenschaften Physik / Astronomie Elektrodynamik
Naturwissenschaften Physik / Astronomie Optik
Technik Luft- / Raumfahrttechnik
Schlagworte Astronomy • cusps • Geophysics • magnetospheric physics • particles • solar wind • space physics
ISBN-10 1-4020-3605-1 / 1402036051
ISBN-13 978-1-4020-3605-7 / 9781402036057
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