论文标题

Kerr修饰的腔宏观力学中的机械双重性

Mechanical Bistability in Kerr-modified Cavity Magnomechanics

论文作者

Shen, Rui-Chang, Li, Jie, Fan, Zhi-Yuan, Wang, Yi-Pu, You, J. Q.

论文摘要

在腔射击系统中观察到可动的机械振动,该系统由微波腔模式,镁模式和铁磁性YTTrium-Iron-Garnet(YIG)球体的机械振动模式组成。双态性在强的微波驱动场下方的机械频率和线宽都表现出来,这同时激活了三种不同类型的非线性,即磁曲折,磁杆自我和镁phonon-Phonon-phonon-phonon-phonon-sross-kerr非线性。首先预测并测量了磁机械的镁 - 光子横kerr非线性。该系统进入一个制度,其中KERR型非线性强烈修改了仅具有辐射压力的雄伟宏伟耦合的常规腔宏伟学。在实验中鉴定并区分了三种不同类型的非线性。我们的工作展示了一种新的机制,可以通过结合磁截图和KERR型非线性来实现机械双重性,并表明这种Kerr修饰的腔宏观力学为研究单个实验中许多不同的非线性提供了独特的平台。

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 (YIG) 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 work 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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