Micromagnetic simulations show that moving domain walls in a Permalloy racetrack above YIG can shift the phase of Damon-Eshbach spin waves by up to ±90 degrees via stray-field-induced wavelength changes.
Realization of spin-wave logic gates,
3 Pith papers cite this work, alongside 720 external citations. Polarity classification is still indexing.
citation-role summary
citation-polarity summary
fields
cond-mat.mes-hall 3years
2026 3roles
background 1polarities
background 1representative citing papers
Derives two-film scattering theory for planar cavity magnonics that enables geometry-controlled bright-channel enhancement and symmetry-breaking effects on mode visibility.
Induced nonlinear phase shift up to 180° in forward volume spin waves using few-milliwatt pumping power in YIG films, stronger than for surface waves.
citing papers explorer
-
Spin-Wave Phase Shifter Controlled by a Domain Wall Racetrack
Micromagnetic simulations show that moving domain walls in a Permalloy racetrack above YIG can shift the phase of Damon-Eshbach spin waves by up to ±90 degrees via stray-field-induced wavelength changes.
-
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.
-
Induced nonlinear phase shift of forward volume spin waves in magnetic films and one-dimensional magnonic crystals
Induced nonlinear phase shift up to 180° in forward volume spin waves using few-milliwatt pumping power in YIG films, stronger than for surface waves.