The scientist’s investigation covers issues in Magnetosphere, Saturn, Geophysics, Magnetosphere of Saturn and Solar wind. His research in Magnetosphere intersects with topics in Computational physics and Astronomy, Titan. As a part of the same scientific study, Chris S. Arridge usually deals with the Saturn, concentrating on Plasma sheet and frequently concerns with Saturn's hexagon and Atomic physics.
His studies deal with areas such as Astrobiology, Magnetosphere of Jupiter, Astrophysics and Current sheet as well as Magnetosphere of Saturn. Chris S. Arridge interconnects Amplitude, Field line and Ionosphere in the investigation of issues within Astrophysics. His research in Solar wind tackles topics such as Planet which are related to areas like Noon.
Chris S. Arridge mainly investigates Magnetosphere, Saturn, Astronomy, Astrophysics and Solar wind. Chris S. Arridge combines subjects such as Geophysics, Ionosphere and Current sheet with his study of Magnetosphere. His study looks at the relationship between Saturn and fields such as Ring current, as well as how they intersect with chemical problems.
His Astronomy study which covers Astrobiology that intersects with Ice giant. His study in Astrophysics is interdisciplinary in nature, drawing from both Magnetic reconnection and Enceladus. In Magnetosphere of Saturn, Chris S. Arridge works on issues like Maser, which are connected to Cyclotron.
His primary scientific interests are in Saturn, Magnetosphere, Astrophysics, Planet and Astronomy. The Saturn study combines topics in areas such as Rotation period, Jupiter, Energetic neutral atom, Current sheet and Solar wind. In his research, he undertakes multidisciplinary study on Magnetosphere and Local time.
His Astrophysics study also includes
This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.
Cassini magnetometer observations during Saturn orbit insertion.
M. K. Dougherty;N. Achilleos;N. André;C. S. Arridge.
Science (2005)
Modeling the size and shape of Saturn's magnetopause with variable dynamic pressure
C. S. Arridge;N. Achilleos;M. K. Dougherty;K. K. Khurana.
Journal of Geophysical Research (2006)
Warping of Saturn's magnetospheric and magnetotail current sheets
C. S. Arridge;C. S. Arridge;K. K. Khurana;C. T. Russell;D. J. Southwood;D. J. Southwood.
Journal of Geophysical Research (2008)
Magnetic field structure of Saturn's dayside magnetosphere and its mapping to the ionosphere: Results from ring current modeling
E. J. Bunce;C. S. Arridge;S. W. H. Cowley;M. K. Dougherty.
web science (2008)
A new form of Saturn's magnetopause using a dynamic pressure balance model, based on in situ, multi-instrument Cassini measurements
S.J. Kanani;Chris S. Arridge;G.H. Jones;A.N. Fazakerley.
Journal of Geophysical Research (2010)
Titan's magnetic field signature during the first Cassini encounter.
Heiko Backes;Fritz M. Neubauer;Michele K. Dougherty;Nicholas Achilleos.
Science (2005)
Ionospheric electrons in Titan's tail: Plasma structure during the Cassini T9 encounter
A. J. Coates;F. J. Crary;D. T. Young;K. Szego.
Geophysical Research Letters (2007)
Origin of Saturn's aurora: Simultaneous observations by Cassini and the Hubble Space Telescope
E. J. Bunce;C. S. Arridge;J. T. Clarke;A. J. Coates.
web science (2008)
Strong rapid dipolarizations in Saturn's magnetotail: In situ evidence of reconnection
C. M. Jackman;C. T. Russell;D. J. Southwood;D. J. Southwood;C. S. Arridge.
Geophysical Research Letters (2007)
Cassini observations of the variation of Saturn's ring current parameters with system size
E. J. Bunce;S. W. H. Cowley;I. I. Alexeev;C. S. Arridge.
web science (2007)
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