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On the ions acceleration via collisionless magnetic reconnection in laboratory plasmas
E. Cazzola
,
D. Curreli
, S. Markidis
, G. Lapenta
Nuclear, Plasma and Radiological Engineering
National Center for Supercomputing Applications (NCSA)
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›
peer-review
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Keyphrases
Mass Ratio
100%
Laboratory Plasma
100%
Magnetic Reconnection
100%
Collisionless Magnetic Reconnection
100%
Ion Outflow
100%
Ion Acceleration
100%
Magnetic Field
50%
Reconnection
50%
Electron Temperature
50%
Ion Energy
50%
Temperature Field
50%
Ion Dynamics
50%
Density Field
50%
Reduced Mass
50%
Initial Electron
50%
Energy Budget
50%
Magnetohydrodynamical Simulations
50%
Magnetic Field Intensity
50%
Current Sheet
50%
Shock Wave Structure
50%
Electric Propulsion
50%
Plasma Acceleration
50%
Fully Kinetic Simulation
50%
Laboratory Applications
50%
Shock Discontinuities
50%
Physics
Mass Ratio
100%
Electron Energy
50%
Magnetic Field
50%
Shock Wave
50%
Magnetic Flux
50%
Magnetohydrodynamic Simulation
50%
Electric Propulsion
50%
Plasma Acceleration
50%
Current Sheet
50%
Temperature Distribution
50%
Initial Electron
50%