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Featured researches published by A.S. Lipatov.


Planetary and Space Science | 2013

Jovian plasma torus interaction with Europa. Plasma wake structure and effect of inductive magnetic field: 3D hybrid kinetic simulation

A.S. Lipatov; John F. Cooper; W. R. Paterson; E. C. Sittler; R. E. Hartle; D. G. Simpson

Abstract The hybrid kinetic model supports comprehensive simulation of the interaction between different spatial and energetic elements of the Europa moon–magnetosphere system with respect to a variable upstream magnetic field and flux or density distributions of plasma and energetic ions, electrons, and neutral atoms. This capability is critical for improving the interpretation of the existing Europa flyby measurements from the Galileo Orbiter mission, and for planning flyby and orbital measurements (including the surface and atmospheric compositions) for future missions. The simulations are based on recent models of the atmosphere of Europa ( Cassidy et al., 2007 , Shematovich et al., 2005 ). In contrast to previous approaches with MHD simulations, the hybrid model allows us to fully take into account the finite gyroradius effect and electron pressure, and to correctly estimate the ion velocity distribution and the fluxes along the magnetic field (assuming an initial Maxwellian velocity distribution for upstream background ions). Photoionization, electron-impact ionization, charge exchange and collisions between the ions and neutrals are also included in our model. We consider the models with O ++ and S ++ background plasma, and various betas for background ions and electrons, and pickup electrons. The majority of O2 atmosphere is thermal with an extended non-thermal population ( Cassidy et al., 2007 ). In this paper, we discuss two tasks: (1) the plasma wake structure dependence on the parameters of the upstream plasma and Europas atmosphere (model I, cases (a) and (b) with a homogeneous Jovian magnetosphere field, an inductive magnetic dipole and high oceanic shell conductivity); and (2) estimation of the possible effect of an induced magnetic field arising from oceanic shell conductivity. This effect was estimated based on the difference between the observed and modeled magnetic fields (model II, case (c) with an inhomogeneous Jovian magnetosphere field, an inductive magnetic dipole and low oceanic shell conductivity).


Planetary and Space Science | 2010

Saturn's magnetospheric interaction with Titan as defined by Cassini encounters T9 and T18: New results

E. C. Sittler; R. E. Hartle; Robert E. Johnson; John F. Cooper; A.S. Lipatov; C. Bertucci; A. J. Coates; K. Szego; Mark Shappirio; D. G. Simpson; J.-E. Wahlund


Advances in Space Research | 2011

Background and Pickup Ion Velocity Distribution Dynamics in Titan's Plasma Environment: 3D Hybrid Simulation and Comparison with CAPS T9 Observations

A.S. Lipatov; E. C. Sittler; R. E. Hartle; John F. Cooper; D. G. Simpson


Planetary and Space Science | 2010

Jovian plasma torus interaction with Europa: 3D hybrid kinetic simulation. First results

A.S. Lipatov; John F. Cooper; W.R. Paterson; E. C. Sittler; R. E. Hartle; D. G. Simpson


Planetary and Space Science | 2012

Saturn's Magnetosphere Interaction with Titan for T9 Encounter: 3D Hybrid Modeling and Comparison with CAPS Observations

A.S. Lipatov; E. C. Sittler; R. E. Hartle; John F. Cooper; D. G. Simpson


Advances in Space Research | 2012

Effects of Na+Na+ and He+He+ pickup ions on the lunar-like plasma environment: 3D hybrid modeling

A.S. Lipatov; John F. Cooper; E. C. Sittler; R. E. Hartle


Planetary and Space Science | 2012

Short wavelength electromagnetic perturbations excited near the Solar Probe Plus spacecraft in the inner heliosphere: 2.5D hybrid modeling

A.S. Lipatov; Edward C. Sittler; R. E. Hartle; John F. Cooper


Planetary and Space Science | 2016

Global Effects of Transmitted Shock Wave Propagation Through the Earth's Inner Magnetosphere: First Results from 3-D Hybrid Kinetic Modeling

A.S. Lipatov; David G. Sibeck


Planetary and Space Science | 2014

Titan׳s plasma environment: 3D hybrid kinetic modeling of the TA flyby and comparison with CAPS-ELS and RPWS LP observations

A.S. Lipatov; E. C. Sittler; R. E. Hartle; John F. Cooper; D. G. Simpson


Advances in Space Research | 2013

The light (H+,H2+,He+) and heavy (Na+) pickup ion dynamics in the lunar-like plasma environment: 3D hybrid kinetic modeling

A.S. Lipatov; John F. Cooper; E. C. Sittler; R. E. Hartle

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R. E. Hartle

Goddard Space Flight Center

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E. C. Sittler

Goddard Space Flight Center

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John F. Cooper

Goddard Space Flight Center

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D. G. Simpson

Goddard Space Flight Center

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Mark Shappirio

Goddard Space Flight Center

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C. Bertucci

University of Buenos Aires

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K. Szego

Hungarian Academy of Sciences

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A. J. Coates

University College London

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D. T. Young

Southwest Research Institute

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David G. Sibeck

Goddard Space Flight Center

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