Nonreciprocal singularities dominated by the dissipative photon-magnon coupling in non-Hermitian systems

Yongzhang Shi, Chi Zhang, Zhenhui Hao, Changjun Jiang, C. K. Ong, Guozhi Chai
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Abstract

We investigated the magnon-photon coupling in an open cavity magnonic system, which leads to two different nonreciprocal singularities dominated by the dissipative coupling. One type of singularity is the exceptional point, which is just on the exceptional surface in parameter space. The other type of singularity is the bound state in the continuum discovered in the level-attraction-like coupling, which is above the exceptional surface. In experiment, we realized the two different singularities with nonreciprocity and selectivity in an open cavity magnonic system with suitable dissipation rating. Our results can be understood well with the pseudo-Hermitian theory of magnon-polariton system.
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非赫米提系统中耗散光磁耦合主导的非互易奇点
我们研究了开腔磁子系统中的磁子-光子耦合,这种耦合会导致两种由耗散耦合主导的非互易奇点。一种奇点是例外点,它正好位于参数空间的例外面上。另一种奇点是在连续相中发现的束缚态,它位于异常面之上。在实验中,我们在具有适当耗散等级的开腔磁子系统中实现了这两种不同的奇异性,它们具有非互易性和选择性。
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