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Featured researches published by M. M. Cowee.


Journal of Geophysical Research | 2008

One-dimensional hybrid simulations of planetary ion pickup : Effects of variable plasma and pickup conditions

M. M. Cowee; C. T. Russell; Robert J. Strangeway

[1] The one-dimensional hybrid simulation technique using massless fluid electrons and kinetic ions has been shown to successfully reproduce the growth of electromagnetic plasma waves generated by ion populations with a ring velocity distributions (T ⊥ > T ∥ ). Such populations are found at Jupiter and Saturn, where newborn ions are picked up into corotating plasma flows that are nearly perpendicular to the background magnetic field. In previous simulation work, which focused on pickup ion generated waves near lo, we considered all the pickup ions to be present in the simulation at the start of the run (initial value). For a more realistic treatment of ion pickup, we now modify the simulation to include continuous ion injection over time. There are several important differences between the initial value and the injection simulations, namely that when ions are injected, the generated waves eventually reach a quasi-steady level, which is proportional to the injection rate. The results indicate that less than 20% of the pickup ion energy resides in the waves at any given time. Indeed, for certain conditions, the ion cyclotron waves observed at lo may represent only a few percent of the initial pickup ion energy. We carry out simulations varying the plasma and pickup conditions, including the background plasma density and temperature, pickup rate, and multiple pickup ion species to see how the wave amplitudes are affected. We also briefly look at the oblique propagation of the waves to estimate group velocities.


Geophysical Research Letters | 2008

Mirror mode waves: Messengers from the coronal heating region

C. T. Russell; Lan K. Jian; J. G. Luhmann; T. L. Zhang; F. M. Neubauer; R. M. Skoug; X. Blanco-Cano; N. Omidi; M. M. Cowee


Geophysical Research Letters | 2007

1D hybrid simulations of planetary ion‐pickup: Energy partition

M. M. Cowee; Dan Winske; C. T. Russell; Robert J. Strangeway


Journal of Geophysical Research | 2006

One-dimensional hybrid simulations of planetary ion pickup: Techniques and verification

M. M. Cowee; Robert J. Strangeway; C. T. Russell; Dan Winske


Journal of Geophysical Research | 2007

One‐dimensional hybrid simulations of obliquely propagating ion cyclotron waves: Application to ion pickup at Io

M. M. Cowee; C. T. Russell; R. J. Strangeway; X. Blanco-Cano


Planetary and Space Science | 2003

Fast neutral particles as probes of the extent of Io's exosphere

M. M. Cowee; Y-L. Wang; C. T. Russell


Journal of Geophysical Research | 2005

On the possibility of fast neutral production of the inner Io torus

M. M. Cowee; C. T. Russell; Yongqiang Wang; D. A. Gurnett


Planetary and Space Science | 2008

Mass-loading of the Jovian magnetosphere by Io

M. M. Cowee


Journal of Geophysical Research | 2008

One-dimensional hybrid simulations of planetary ion pickup: Effects of variable plasma and pickup conditions: SIMULATIONS OF ION PICKUP CONDITIONS

M. M. Cowee; C. T. Russell; R. J. Strangeway


Journal of Geophysical Research | 2007

One-dimensional hybrid simulations of obliquely propagating ion cyclotron waves: Application to ion pickup at Io: 1-D SIMULATION OF OBLIQUE ICW AT IO

M. M. Cowee; C. T. Russell; R. J. Strangeway; X. Blanco-Cano

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C. T. Russell

University of California

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X. Blanco-Cano

National Autonomous University of Mexico

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Dan Winske

Los Alamos National Laboratory

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Yongqiang Wang

Los Alamos National Laboratory

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J. G. Luhmann

University of California

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Lan K. Jian

University of California

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N. Omidi

University of California

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