Spin-wave coupling to electromagnetic cavity fields in dysposium ferrite
Coupling of spin waves with electromagnetic cavity field is demonstrated in an
antiferromagnet, dysprosium ferrite (DyFeO 3). By measuring transmission at 0.2–0.35 THz
and sweeping sample temperature, magnon-photon coupling signatures were found at
crossings of spin-wave resonances with Fabry-Pérot cavity modes formed in samples. The
obtained spectra are explained in terms of classical electrodynamics and a microscopic
model.
antiferromagnet, dysprosium ferrite (DyFeO 3). By measuring transmission at 0.2–0.35 THz
and sweeping sample temperature, magnon-photon coupling signatures were found at
crossings of spin-wave resonances with Fabry-Pérot cavity modes formed in samples. The
obtained spectra are explained in terms of classical electrodynamics and a microscopic
model.
Coupling of spin waves with electromagnetic cavity field is demonstrated in an antiferromagnet, dysprosium ferrite (). By measuring transmission at 0.2–0.35 THz and sweeping sample temperature, magnon-photon coupling signatures were found at crossings of spin-wave resonances with Fabry-Pérot cavity modes formed in samples. The obtained spectra are explained in terms of classical electrodynamics and a microscopic model.
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