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Amplification of magnetic field twisting by a stagnation point flow
Chloe Erin Sumner,
Youra Taroyan
Department of Physics
Research output
:
Contribution to journal
›
Article
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peer-review
1
Citation (Scopus)
95
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Dive into the research topics of 'Amplification of magnetic field twisting by a stagnation point flow'. Together they form a unique fingerprint.
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Earth and Planetary Sciences
Regime
66%
Thread
50%
Twisting
50%
Critical Point
50%
Magnetic Field
50%
Gradient
33%
Pitch (Inclination)
33%
Investigation
33%
Plasma
33%
Amplification
33%
Stagnation Point
33%
Amplitude
33%
Speed
33%
Magnetic Diffusion
16%
Growth
16%
Solar Atmosphere
16%
Increasing
16%
Condensate
16%
Model
16%
Chromosphere
16%
Support
16%
Context
16%
Inclusion
16%
Time
16%
Physics
Prominence
100%
Regimes
66%
Twisting
50%
Magnetic Fields
50%
Amplitudes
33%
Gradients
33%
Speed
33%
Stagnation Point
33%
Oscillation
33%
Model
16%
Growth
16%
Increasing
16%
Inclusions
16%
Condensation
16%
Magnetic Diffusion
16%
Hypergeometric Functions
16%
Topology
16%
Condensate
16%