Current-Induced Modulation of Spin-Wave Propagation in a Y-Junction via Transverse Spin-Transfer Torque

Fuente: arXiv
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Main Authors: Gnoatto, Lorenzo, Menezes, Rai M., Bassant, Artim L., Duine, Rembert A., Milosevic, Milorad V., Lavrijsen, Reinoud
Format: Preprint
Published: 2025
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author Gnoatto, Lorenzo
Menezes, Rai M.
Bassant, Artim L.
Duine, Rembert A.
Milosevic, Milorad V.
Lavrijsen, Reinoud
author_facet Gnoatto, Lorenzo
Menezes, Rai M.
Bassant, Artim L.
Duine, Rembert A.
Milosevic, Milorad V.
Lavrijsen, Reinoud
contents We report the transverse control of spin-wave propagation in the configuration where the spin-wave wavevector k is perpendicular to the charge-current density J. Building on theoretical predictions of spin-wave refraction by nonuniform spin-polarized currents, and guided by micromagnetic simulations used to optimize the device geometry and current distribution, we experimentally explore a Y-shaped Permalloy structure in which a locally injected current perturbs the spin-wave dispersion. Measurements reveal current-dependent amplitude differences between the two output branches, providing initial experimental indications consistent with transverse, spin-transfer-torque-driven deflection. Although the magnitude of the effect is modest and accompanied by significant uncertainties, the observed trends qualitatively follow expectations from the simulations. These results demonstrate the feasibility of influencing spin-wave routing through local current injection and establish a proof-of-concept basis for current-controlled manipulation of spin-wave propagation in reconfigurable magnonic circuits.
format Preprint
id arxiv_https___arxiv_org_abs_2512_16563
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Current-Induced Modulation of Spin-Wave Propagation in a Y-Junction via Transverse Spin-Transfer Torque
Gnoatto, Lorenzo
Menezes, Rai M.
Bassant, Artim L.
Duine, Rembert A.
Milosevic, Milorad V.
Lavrijsen, Reinoud
Mesoscale and Nanoscale Physics
Applied Physics
We report the transverse control of spin-wave propagation in the configuration where the spin-wave wavevector k is perpendicular to the charge-current density J. Building on theoretical predictions of spin-wave refraction by nonuniform spin-polarized currents, and guided by micromagnetic simulations used to optimize the device geometry and current distribution, we experimentally explore a Y-shaped Permalloy structure in which a locally injected current perturbs the spin-wave dispersion. Measurements reveal current-dependent amplitude differences between the two output branches, providing initial experimental indications consistent with transverse, spin-transfer-torque-driven deflection. Although the magnitude of the effect is modest and accompanied by significant uncertainties, the observed trends qualitatively follow expectations from the simulations. These results demonstrate the feasibility of influencing spin-wave routing through local current injection and establish a proof-of-concept basis for current-controlled manipulation of spin-wave propagation in reconfigurable magnonic circuits.
title Current-Induced Modulation of Spin-Wave Propagation in a Y-Junction via Transverse Spin-Transfer Torque
topic Mesoscale and Nanoscale Physics
Applied Physics
url https://arxiv.org/abs/2512.16563