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Interactions between two magnetohydrodynamic Kelvin-Helmholtz instabilities
S. H. Lai
,
W. H. Ip
Center for Astronautical Physics and Engineering
Graduate Institute of Astronomy
Research output
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Contribution to journal
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Article
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peer-review
1
Scopus citations
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Dive into the research topics of 'Interactions between two magnetohydrodynamic Kelvin-Helmholtz instabilities'. Together they form a unique fingerprint.
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Keyphrases
Magnetohydrodynamics
100%
Velocity Shear
100%
Kelvin-Helmholtz Instability
100%
Shear Layer
87%
Fast Mode
62%
Plane Wave
25%
Nonlinear Evolution
25%
Mach Cone
25%
Turbulence
12%
Physical Processes
12%
Possible Mechanisms
12%
Surface Waves
12%
Mach number
12%
Background Plasma
12%
Tangential Discontinuity
12%
Plasma Temperature
12%
Magnetohydrodynamic Simulation
12%
Transition Layer
12%
Plasma Velocity
12%
Two-fluid Magnetohydrodynamics
12%
Non-uniform Environment
12%
Non-uniform Medium
12%
Surface Perturbation
12%
Physics
Magnetohydrodynamics
100%
Shear Layer
100%
Kelvin-Helmholtz Instability
100%
Blood Plasma
42%
Mach Cone
28%
Plane Wave
28%
Physical Process
14%
Mach Number
14%
Plasma Temperature
14%
Magnetohydrodynamic Simulation
14%
Surface Wave
14%
Engineering
Shear Layer
100%
Kelvin Helmholtz Instability
100%
Magnetohydrodynamics
100%
Plane Wave
28%
Mach Cone
28%
Two Dimensional
14%
Mach Number
14%
Tangential Discontinuity
14%
Temperature Plasma
14%