Ultrastrong magnon–magnon coupling dominated by antiresonant interactions

Author:

Makihara TakumaORCID,Hayashida Kenji,Noe II G. Timothy,Li XinweiORCID,Marquez Peraca Nicolas,Ma Xiaoxuan,Jin Zuanming,Ren WeiORCID,Ma Guohong,Katayama Ikufumi,Takeda JunORCID,Nojiri Hiroyuki,Turchinovich DmitryORCID,Cao ShixunORCID,Bamba MotoakiORCID,Kono JunichiroORCID

Abstract

AbstractExotic quantum vacuum phenomena are predicted in cavity quantum electrodynamics systems with ultrastrong light-matter interactions. Their ground states are predicted to be vacuum squeezed states with suppressed quantum fluctuations owing to antiresonant terms in the Hamiltonian. However, such predictions have not been realized because antiresonant interactions are typically negligible compared to resonant interactions in light-matter systems. Here we report an unusual, ultrastrongly coupled matter-matter system of magnons that is analytically described by a unique Hamiltonian in which the relative importance of resonant and antiresonant interactions can be easily tuned and the latter can be made vastly dominant. We found a regime where vacuum Bloch-Siegert shifts, the hallmark of antiresonant interactions, greatly exceed analogous frequency shifts from resonant interactions. Further, we theoretically explored the system’s ground state and calculated up to 5.9 dB of quantum fluctuation suppression. These observations demonstrate that magnonic systems provide an ideal platform for exploring exotic quantum vacuum phenomena predicted in ultrastrongly coupled light-matter systems.

Funder

National Natural Science Foundation of China

United States Department of Defense | United States Army | U.S. Army Research, Development and Engineering Command | Army Research Office

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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