马格农
双稳态
克尔效应
凝聚态物理
光学双稳态
物理
激光线宽
铁磁性
钇铁石榴石
磁致伸缩
微波腔
微波食品加热
非线性光学
激光器
光学
非线性系统
磁场
磁化
光电子学
量子力学
铁磁性
作者
Rui-Chang Shen,Jie Li,Zhiyuan Fan,Yi‐Pu Wang,J. Q. You
标识
DOI:10.1103/physrevlett.129.123601
摘要
Bistable mechanical vibration is observed in a cavity magnomechanical system, which consists of a microwave cavity mode, a magnon mode, and a mechanical vibration mode of a ferrimagnetic yttrium-iron-garnet sphere. The bistability manifests itself in both the mechanical frequency and linewidth under a strong microwave drive field, which simultaneously activates three different kinds of nonlinearities, namely, magnetostriction, magnon self-Kerr, and magnon-phonon cross-Kerr nonlinearities. The magnon-phonon cross-Kerr nonlinearity is first predicted and measured in magnomechanics. The system enters a regime where Kerr-type nonlinearities strongly modify the conventional cavity magnomechanics that possesses only a radiation-pressure-like magnomechanical coupling. Three different kinds of nonlinearities are identified and distinguished in the experiment. Our Letter demonstrates a new mechanism for achieving mechanical bistability by combining magnetostriction and Kerr-type nonlinearities, and indicates that such Kerr-modified cavity magnomechanics provides a unique platform for studying many distinct nonlinearities in a single experiment.
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