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Open AccessJournal ArticleDOI

Design of an optomagnonic crystal: Towards optimal magnon-photon mode matching at the microscale

TLDR
In this paper, an optomagnonic crystal consisting of a Faraday active magnetic dielectric was proposed, which was periodically patterned at the microscale and supported both photon and magnon modes.
Abstract
The authors propose an optomagnonic crystal consisting of a Faraday-active magnetic dielectric which is periodically patterned at the microscale and supports both photon and magnon modes.

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Advances in Magnetics Roadmap on Spin-Wave Computing

TL;DR: Magnonics addresses the physical properties of spin waves and utilizes them for data processing as mentioned in this paper , and many proof-of-concept prototypes have already been realized in laboratories, such as the one presented in this article.
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Cavity magnonics

TL;DR: Cavity magnonics as mentioned in this paper deals with the interaction of magnons and magnetic materials and confined electromagnetic fields, and is a young field that is gearing up for integration in future quantum technologies.
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Recent progress on optomagnetic coupling and optical manipulation based on cavity-optomagnonics

TL;DR: In this paper , a short review of the recent theoretical and experimental progress in the field of optomagnetic coupling and optical manipulation based on cavity-optomagnonics is presented.
Journal ArticleDOI

Polarization Dependent Scattering in Cavity Optomagnonics.

TL;DR: In this article, the polarization dependence of magnon-photon scattering in an optical microcavity is reported and a copolarized scattering due to second-order Cotton-Mouton effect is also observed.
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Light propagation and magnon-photon coupling in optically dispersive magnetic media

- 10 Jan 2022 - 
TL;DR: In this article , a detailed derivation of the magnon-photon coupling Hamiltonian in dispersive media both for degenerate and non-degenerate optical modes is presented.
References
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Journal ArticleDOI

Magnonic band engineering by intrinsic and extrinsic mirror symmetry breaking in antidot spin-wave waveguides.

TL;DR: It is shown that structural changes breaking the mirror symmetry of the waveguide can close the magnonic bandgap, and this idea of correcting an intrinsic defect by extrinsic means should be applicable to spin-waves in both exchange and dipolar interaction regimes, as well as to other waves in general.
Journal ArticleDOI

Orbital angular momentum conservation in Brillouin light scattering within a ferromagnetic sphere

TL;DR: In this paper, a selection rule that dictates the exchange of orbital angular momenta between the vortices was shown to be responsible for the experimentally observed non-reciprocal Brillouin light scattering.
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Torque-mixing magnetic resonance spectroscopy

TL;DR: In this article, a universal torque-mixing method for magnetic resonance spectroscopy is presented, where the transverse component of a precessing dipole moment can be measured using a resonant mechanical torque sensor.
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Photomagnonic nanocavities for strong light–spin-wave interaction

TL;DR: In this article, the interaction of visible and near-infrared light with spin waves in appropriately designed dual nanocavities, for both photons and magnons, is investigated by means of rigorous calculations, correct to arbitrary order in the magneto-optical coupling parameter.
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