Bistability of Cavity Magnonics System with Magnon Kerr Effect

Debabrata Ganthya, Arumay Parai, P. Jana
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Abstract

In this study a comprehensive theory is developed for a hybrid cavity magnonics system consisting of a microwave cavity strongly coupled to spin excitations or magnons in a single-crystal yttrium iron garnet (YIG) sample with the magnons exhibiting nonlinear Kerr effect caused by magnetocrystalline anisotropy in YIG. The system dynamics is analysed in Hamilton Langevin formulation and it is shown that the magnon frequency shift due to Kerr nonlinearity is bistable with a upper and a lower branch of cavity magnon polaritons (CMP). Further by analytically and graphically studying different conditions imposed on the bistability equation it is demonstrated that the bistability is controllable by tuning the system parameters involved.
具有磁振子克尔效应的腔磁振系统的双稳性
本文提出了一种由微波腔与单晶钇铁石榴石(YIG)样品中的自旋激励或磁振子强耦合组成的混合腔磁振学系统的综合理论,其中磁振子在YIG中表现出由磁晶各向异性引起的非线性克尔效应。用Hamilton Langevin公式分析了系统动力学,证明了克尔非线性引起的磁振子频移是双稳态的,具有腔磁振子极化子(CMP)的上分支和下分支。进一步通过分析和图解研究了施加在双稳性方程上的不同条件,证明了双稳性可以通过调节系统参数来控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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