Ac magnetostriction on lead reveals quasiresonant collective oscillations of S/N domain walls driven by eddy currents in normal domains, distinct from standard relaxation behavior.
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Ultrathin freestanding ferroelectric oxides host a variety of switchable topological polar textures such as liquid-like domains, helix-waves, and chiral bubbles that can be controlled by time-dependent electric fields.
citing papers explorer
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Collective Resonance of Superconducting/Normal Domain Walls in the Intermediate State of type-I superconductor
Ac magnetostriction on lead reveals quasiresonant collective oscillations of S/N domain walls driven by eddy currents in normal domains, distinct from standard relaxation behavior.
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Switchable Topological Polar Textures in Freestanding Ultrathin Ferroelectric Oxides
Ultrathin freestanding ferroelectric oxides host a variety of switchable topological polar textures such as liquid-like domains, helix-waves, and chiral bubbles that can be controlled by time-dependent electric fields.