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We theoretically explore nonlinearities of ferromagnets in microwave cavities in the classical and quantum regimes, and assess the resources for quantum information, i.e. fluctuation squeezing and bipartite entanglement. The…

Mesoscale and Nanoscale Physics · Physics 2020-02-12 Mehrdad Elyasi , Yaroslav M. Blanter , Gerrit E. W. Bauer

Incorporating cavity magnonics has opened up a new avenue in controlling non-reciprocity. This work examines a yttrium iron garnet sphere coupled to a planar microwave cavity at milli-Kelvin temperature. Non-reciprocal device behavior…

Applied Physics · Physics 2023-03-09 Mun Kim , Armin Tabesh , Tyler Zegray , Shabir Barzanjeh , Can-Ming Hu

The manipulation of magnetization lies at the heart of spintronic and magnonic technologies, with the ultimate performance of such systems limited by the velocity at which magnetic excitations can propagate. Here, we demonstrate ultrafast…

The fabrication and integration of high-quality structures of Yttrium Iron Garnet (YIG) is critical for magnonics.Films with excellent properties are obtained only on single crystal Gadolinium Gallium Garnet (GGG) substrates using…

Magnon systems used in quantum devices require low damping if coherence is to be maintained. The ferrimagnetic electrical insulator yttrium iron garnet (YIG) has low magnon damping at room temperature and is a strong candidate to host…

Mesoscale and Nanoscale Physics · Physics 2019-10-28 Sandoko Kosen , Arjan F. van Loo , Dmytro A. Bozhko , Laura Mihalceanu , Alexy D. Karenowska

The exceptional magnetic, optical and phononic properties of Yttrium Iron Garnet (YIG) make it unique for spin-wave based and photonic applications. Yet, nanostructuring crystalline YIG and manipulating its magnetism in a non-destructive…

We apply Mie scattering theory to study the interaction of magnetic spheres with microwaves in cavities beyond the magnetostatic and rotating wave approximations. We demonstrate that both strong and ultra-strong coupling can be realized for…

Mesoscale and Nanoscale Physics · Physics 2015-07-14 Babak Zare Rameshti , Yunshan Cao , Gerrit E. W. Bauer

The strong photon-magnon coupling between an electromagnetic cavity and two yttrium iron garnet (YIG) spheres has been investigated in the context of a strong mutual dipolar interaction between the spheres. A decrease in the coupling…

Materials Science · Physics 2021-01-04 Antoine Morin , Christian Lacroix , David Ménard

We report high-resolution inelastic neutron scattering measurements of the excitation spectrum in large single crystals of the spin-1/2 triangular lattice Ising-like antiferromagnet Na2BaCo(PO4)2 in magnetic fields applied transverse to the…

Strongly Correlated Electrons · Physics 2025-09-16 Leonie Woodland , Ryutaro Okuma , J. Ross Stewart , Christian Balz , Radu Coldea

Magnetic bit writing by short-wave magnons without conversion to the electrical domain is expected to be a game-changer for in-memory computing architectures. Recently, the reversal of nanomagnets by propagating magnons was demonstrated.…

Mesoscale and Nanoscale Physics · Physics 2024-03-20 Andrea Mucchietto , Korbinian Baumgaertl , Dirk Grundler

We generalize the concept of triply-degenerate nodal points to non-collinear antiferromagnets. Here, we introduce this concept to insulating quantum antiferromagnets on the decorated honeycomb lattice, with spin-$1$ bosonic quasiparticle…

Strongly Correlated Electrons · Physics 2018-02-27 S. A. Owerre

Spin and photonic systems are at the heart of modern information devices and emerging quantum technologies. An interplay between electron-hole pairs (excitons) in semiconductors and collective spin excitations (magnons) in magnetic crystals…

Mesoscale and Nanoscale Physics · Physics 2022-05-31 Arnaud Gloppe , Masaru Onga , Ryusuke Hisatomi , Atac Imamoglu , Yasunobu Nakamura , Yoshihiro Iwasa , Koji Usami

Spin waves propagating in magnetic materials exhibit nonlinear behavior at large amplitudes due to the competition between excitation and relaxation, providing an attractive platform for exploring nonlinear wave dynamics. In particular,…

The spin diffusion length for thermally excited magnon spins is measured by utilizing a non-local spin-Seebeck effect measurement. In a bulk single crystal of yttrium iron garnet (YIG) a focused laser thermally excites magnon spins. The…

Materials Science · Physics 2015-12-15 Brandon L. Giles , Zihao Yang , John Jamison , Roberto C. Myers

Magnetic media with artificial periodic modulation-magnonic crystals (MCs) - enable tunable spin-wave dynamics and band structure engineering. Nanoscaling enhances these capabilities, making magnonic nanocrystals promising for both…

The impact of the longitudinal spin Seebeck effect (LSSE) on the magnon damping in magnetic-insulator/nonmagnetic-metal bilayers was recently discussed in several reports. However, results of those experiments can be blurred by multimode…

Mesoscale and Nanoscale Physics · Physics 2017-05-03 Thomas Langner , Akihiro Kirihara , Alexander A. Serga , Burkard Hillebrands , Vitaliy I. Vasyuchka

We report the construction and characterization of a comprehensive magnonic-opto-electronic oscillator (MOEO) system based on 1550-nm photonics and yttirum iron garnet (YIG) magnonics. The system exhibits a rich and synergistic parameter…

We demonstrate large normal-mode splitting between a magnetostatic mode (the Kittel mode) in a ferromagnetic sphere of yttrium iron garnet and a microwave cavity mode. Strong coupling is achieved in the quantum regime where the average…

Y3Fe5O12 is arguably the best magnetic material for magnonic quantum information science (QIS) because of its extremely low damping. We report ultralow damping at 2 K in epitaxial Y3Fe5O12 thin films grown on a diamagnetic Y3Sc2Ga3O12…

Materials Science · Physics 2023-06-28 Side Guo , Daniel Russell , Joseph Lanier , Haotian Da , P. Chris Hammel , Fengyuan Yang

The cavity-mediated coupling between magnons in an yttrium-iron-garnet (YIG) sphere and a superconducting qubit has recently been demonstrated as a new platform for preparing macroscopic quantum states. Here, based on this system, we…

Quantum Physics · Physics 2026-05-08 Rong-Can Yang , Gang Liu , Gen Li , Jie Li
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