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Carlos Eduardo

Publications and source records attributed to Carlos Eduardo.

2 recordsLinked to original sources

Resonantly Enhanced Phonon Transport by Magnon Pumping in a Ferromagnetic/Piezoelectric Bilayer

We report the first experimental observation of resonantly enhanced propagating phonon transport induced by magnon pumping in a ferromagnetic/piezoelectric bilayer. Surface acoustic waves (SAWs) generated in a 128$^{\circ}$ Y-cut LiNbO$_3$ delay-line device resonantly excite magnetization dynamics in an adjacent Co film through magnetoelastic coupling. The enhancement of the transmitted acoustic signal occurs exclusively when the SAW frequency satisfies the ferromagnetic resonance condition predicted by the Kittel dispersion, providing a direct experimental fingerprint of resonant magnon-phonon coupling. A systematic comparison between the Co/LiNbO$_3$ bilayer and the bare LiNbO$_3$ substrate demonstrates that the observed transmission enhancement originates solely from the dynamic interaction between propagating phonons and coherent magnetization precession. Furthermore, measurements performed at different SAW harmonics reveal that only the harmonic satisfying the FMR condition produces a measurable enhancement, confirming the frequency-selective nature of the phenomenon. These findings establish an efficient mechanism for transferring energy from magnons to propagating phonons and provide a new strategy for actively controlling coherent acoustic transport in hybrid spintronic, straintronic, and quantum phononic platforms.

cond-mat.mes-hall↗

Controlling magnetic damping with spintronic thermal effects in Py/Fe3O4-PANI bilayers

We report experiments that control magnetic damping in Py/Fe3O4-PANI via two spintronic thermal effects: spin Seebeck and anomalous Nernst. Magnetic damping is measured using ferromagnetic resonance (FMR) techniques, where the sample is excited by microwave radiation and the resulting DC voltage is detected in the Fe3O4-PANI film. When a temperature gradient is applied in the longitudinal configuration, the DC voltage linewidth increases or decreases depending on the direction of the thermal gradient. This finding demonstrates that magnetic damping in Py/Fe3O4-PANI can be controlled by currents induced by thermal effects. Remarkably, the absolute linewidth changes observed in Py/Fe3O4-PANI exceed those seen in bilayers of ferrimagnetic insulator yttrium iron garnet and heavy metal by more than an order of magnitude. We interpret the significant change in magnetic damping as a result of intrinsic phenomena occurring in bilayers.

cond-mat.mtrl-sci↗