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We characterize some of the distinctive hallmarks of magnon-magnon interaction mediated by the intracavity field of a microwave cavity, along with their testable ramifications. In general, we foreground two widely dissimilar parameter…

Quantum Physics · Physics 2022-06-17 Jayakrishnan M. P. Nair , Debsuvra Mukhopadhyay , Girish S. Agarwal

Level repulsion - the opening of a gap between two degenerate modes due to coupling - is ubiquitous anywhere from solid state theory to quantum chemistry. In contrast, if one mode has negative energy, the mode frequencies attract instead.…

Mesoscale and Nanoscale Physics · Physics 2018-08-29 N. R. Bernier , L. D. Tóth , A. K. Feofanov , T. J. Kippenberg

Coherent and dissipative couplings, respectively characterised by energy level repulsion and attraction, each have different applications for quantum information processing. Thus, a system in which both coherent and dissipative couplings…

Cavity Magnonics is an emerging field that studies the strong coupling between cavity photons and collective spin excitations such as magnons. This rapidly developing field connects some of the most exciting branches of modern physics, such…

Quantum Physics · Physics 2020-05-04 Yi-Pu Wang , Can-Ming Hu

We report dissipative magnon-photon coupling caused by cavity Lenz effect, where the magnons in a magnet induce a rf current in the cavity, leading to a cavity back action that impedes the magnetization dynamics. This effect is revealed in…

Mesoscale and Nanoscale Physics · Physics 2018-10-17 M. Harder , Y. Yang , B. M. Yao , C. H. Yu , J. W. Rao , Y. S. Gui , R. L. Stamps , C. -M. Hu

We discuss various microscopic mechanisms for level attraction in a hybridized magnon-photon system of a ferromagnet in a microwave cavity. The discussion is based upon the electromagnetic theory of continuous media where the effects of the…

Mesoscale and Nanoscale Physics · Physics 2019-09-17 Igor Proskurin , Rair Macêdo , Robert L. Stamps

We provide a comprehensive analytical description of the effective coupling associated with an antiresonance within a hybrid system comprised of a quasi-closed photonic cavity and a ferrimagnetic material. Whilst so-called level attraction…

Quantum Physics · Physics 2024-03-29 Guillaume Bourcin , Alan Gardin , Jeremy Bourhill , Vincent Vlaminck , Vincent Castel

We experimentally validate a unified input--output model that incorporates internal and external coupling phases across multiple cavity modes in a room-temperature cavity magnonic system. By explicitly accounting for both phase…

Quantum Physics · Physics 2026-05-01 Guillaume Bourcin , Mufti Avicena , Vincent Vlaminck , Jeremy Bourhill , Vincent Castel

The emerging level attraction from dissipative light-matter coupling converges the typical Rabi-splitting feature from coherent coupling and exhibits potentials in topological information processing. However, the underlying microscopic…

Mesoscale and Nanoscale Physics · Physics 2020-01-01 Bimu Yao , Tao Yu , Xiang Zhang , Wei Lu , Yongsheng Gui , Can-Ming Hu , Yaroslav M. Blanter

We show how to create maximally entangled dressed states of a weakly interacting multi-partite quantum system by suitably tuning an external, periodic driving field. Floquet theory allows us to relate, in a transparent manner, the…

Quantum Physics · Physics 2012-08-02 Simeon Sauer , Florian Mintert , Clemens Gneiting , Andreas Buchleitner

Driving condensed matter systems with periodic electromagnetic fields can result in exotic states not found in equilibrium. Termed Floquet engineering, such periodic driving applied to electronic systems can tailor quantum effects to induce…

We theoretically investigate the strange phenomenon of attraction between the cavity mode and the exciton mode that has been experimentally observed in a photonic crystal cavity. Our results within the Lindblad master equation approach…

Quantum Physics · Physics 2019-03-27 Santiago Echeverri-Arteaga , Herbert Vinck-Posada , Edgar A. Gómez

The new field of spin cavitronics focuses on the interaction between the magnon excitation of a magnetic element and the electromagnetic wave in a microwave cavity. In strong interaction regime, such interaction usually gives rise to the…

Mesoscale and Nanoscale Physics · Physics 2019-12-04 Weichao Yu , Jiongjie Wang , H. Y. Yuan , Jiang Xiao

While cavity-magnon hybridization offers intriguing physics, its practical implementation is hindered by intrinsic damping in both cavity and magnon modes, leading to short coherence times and constrained applications. Recently, with the…

Quantum Physics · Physics 2026-05-11 Huang Xin , Liu Jingyu , Lin Shirong

A resistive coupling circuit is used to model the recently discovered dissipative coupling in a hybridized cavity photon-magnon system. With this model as a basis we have designed a planar cavity in which a controllable transition between…

Mesoscale and Nanoscale Physics · Physics 2019-05-15 Y. Yang , J. W. Rao , Y. S. Gui , B. M. Yao , W. Lu , C. -M. Hu

Evidence of non-hermitian behavior has been recently demonstrated in cavity magnonics, including the emergence of mode level attraction and exceptional points in spectroscopic measurements. This work demonstrates experimental evidence of…

Quantum Physics · Physics 2025-12-05 Alban Joseph , Mawgan A. Smith , Martin P. Weides , Rair Macêdo

The excitation by a high frequency field of multi--level quantum systems with a slowly varying density of states is investigated. A general approach to study such systems is presented. The Floquet eigenstates are characterized on several…

Condensed Matter · Physics 2009-10-28 Naama Brenner , Shmuel Fishman

Ultracold two-level atoms in optical lattices offer an excellent experimental platform to explore magnon excitations [Fukuhara et al 2013 Nat. Phys. 9, 235; Fukuhara et al 2013 Nature 502, 76]. Here, we investigate how gradient magnetic…

Strongly Correlated Electrons · Physics 2020-10-28 Wenjie Liu , Yongguan Ke , Bo Zhu , Chaohong Lee

We propose a method to parametrically excite low frequency collective modes in an interacting many body system using a Floquet driving at optical frequencies with a modulated amplitude. We demonstrate that it can be used to design plasmonic…

Strongly Correlated Electrons · Physics 2025-04-18 Egor I. Kiselev , Mark S. Rudner , Netanel H. Lindner

Strongly driving a two-level quantum system with light leads to a ladder of Floquet states separated by the photon energy. Nanoscale quantum devices allow the interplay of confined electrons, phonons, and photons to be studied under strong…

Mesoscale and Nanoscale Physics · Physics 2016-11-09 J. Stehlik , Y. -Y. Liu , C. Eichler , T. R. Hartke , X. Mi , M. J. Gullans , J. M. Taylor , J. R. Petta
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