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Updated: Feb 5, 2026

High Resolution Phonon-assisted Quasi-resonance Fluorescence Spectroscopy
Published on: June 28, 2016
Optical probing of magnons and phonons in Ni80Fe20 nanodot arrays
Arundhati Adhikari1, Piotr Graczyk2, Avinash K Chaurasiya1,3
1Department of Condensed Matter and Materials Physics, S. N. Bose National Centre for Basic Sciences, Block JD, Sector III, Salt Lake, Kolkata 700106, India. abarman@bose.res.in.
Abstract:
Control of collective spin excitations by static or dynamic strain is an emerging phenomenon that requires in-depth understanding for the design of future spin-wave-regulated devices. Here, we explore mutually interacting spin waves and acoustic wave modes in addition to a few non-interactive modes through all optical excitation in ordered arrays of Ni80Fe20 nanomagnets. The acoustic wave originating from elastic deformation resonantly couples to the spin wave via the magnetoelastic effect at their overlapping frequency. We demonstrate that the choice of the lattice type in which the magnetic nanodots are arranged is crucial for the observation of the magnetoelastic interaction. Therefore, this study shows that the simultaneous existence of elastic wave and spin wave offer ingeniously advantageous features to pave the way towards energy-efficient magnetoacoustic devices.
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