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Thermo- and magnetic-field-induced dynamics of ferroelectric interphase boundaries
A. Gordon
, I. D. Vagner
, P. Wyder
Department of Mathematics, Physics and Computer Science (Oranim Campus)
Research output
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Contribution to journal
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Article
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peer-review
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Keyphrases
Induced Dynamics
100%
Interphase Boundary
100%
Ferroelectric Phase Transition
100%
Magnetic-field-induced
100%
First-order
50%
High Temperature
50%
Kinetic Energy
50%
Temperature Field
50%
Energy Terms
50%
Inertia Effect
50%
Magnetic Field Strength
50%
Perovskite
50%
Superconductive
50%
Antiferroelectric Phase Transition
50%
Ginzburg-Landau Theory
50%
Engineering
Magnetic Field
100%
Inertia Effect
50%
Magnetic Field Strength
50%
Energy Term
50%
Temperature Distribution
50%
Material Science
Ferroelectric Material
100%