论文标题

反式时间对称腔镁的非常规奇异性

Unconventional Singularity in Anti-Parity-Time Symmetric Cavity Magnonics

论文作者

Yang, Y., Wang, Yi-Pu, Rao, J. W., Gui, Y. S., Yao, B. M., Lu, W., Hu, C. -M.

论文摘要

通过设计具有精确特征空间可控性的抗平价(抗PT)对称腔磁化系统,我们可以在同一系统中观察到两个不同的奇异性。一种奇异点(EP)的一种类型的奇异性是通过调整磁通阻尼而产生的。在两个EPS之间,光子和镁态的最大相干叠加可通过保留的抗PT对称性稳健地维持。另一种奇异性是由两种反共和度的耗散耦合引起的,是连续体(BIC)中非常规的结合状态。在BIC的设置中,耦合系统在组延迟中表现出无限的不连续性。我们发现,两个奇异性在Bloch球体的赤道上共存,该象征揭示了独特的杂种状态,同时表现出最大的相干叠加和慢灯的能力。

By engineering an anti-parity-time (anti-PT) symmetric cavity magnonics system with precise eigenspace controllability, we observe two different singularities in the same system. One type of singularity, the exceptional point (EP), is produced by tuning the magnon damping. Between two EPs, the maximal coherent superposition of photon and magnon states is robustly sustained by the preserved anti-PT symmetry. The other type of singularity, arising from the dissipative coupling of two anti-resonances, is an unconventional bound state in the continuum (BIC). At the settings of BICs, the coupled system exhibits infinite discontinuities in the group delay. We find that both singularities co-exist at the equator of the Bloch sphere, which reveals a unique hybrid state that simultaneously exhibits the maximal coherent superposition and slow light capability.

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