Local heating creates a minimum in saturation magnetization whose associated demagnetizing-field change raises the lowest magnon frequency, driving supercurrents outward from the hot region.
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2 Pith papers cite this work, alongside 914 external citations. Polarity classification is still indexing.
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Derives two-film scattering theory for planar cavity magnonics that enables geometry-controlled bright-channel enhancement and symmetry-breaking effects on mode visibility.
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Local temperature control of magnon frequency and direction of supercurrents in a magnon Bose-Einstein condensate
Local heating creates a minimum in saturation magnetization whose associated demagnetizing-field change raises the lowest magnon frequency, driving supercurrents outward from the hot region.
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Geometry-controlled magnon-polaritons of double magnetic films in planar cavities
Derives two-film scattering theory for planar cavity magnonics that enables geometry-controlled bright-channel enhancement and symmetry-breaking effects on mode visibility.