论文标题

单线圈谐振器中的合成高阶PT对称性

Synthetic high-order PT symmetry in a single coil resonator

论文作者

Zeng, Chao, Guo, Zhiwei, Sun, Yong, Li, Guo, Zhu, Kejia, Jiang, Jun, Li, Yunhui, Jiang, Haitao, Yang, Yaping, Chen, Hong

论文摘要

在物理和工程领域的广泛学科领域,对具有平等时间(PT)对称性的非平均时间(PT)对称性的非热门系统的探索。在这种情况下,主要新兴领域的一个重要例子是使用多个线圈的PT对称无线应用,这些线圈是空间分离但与位置依赖性耦合强度相互耦合的。这种空间PT配置限制了PT对称设计的灵活性和微型化。就这一点而言,灵感来自于在光学谐振器中散射的两个相反的耳语 - 窃窃觉(WG)模式,在这里类似地,我们在实验上证明了一个在单个线圈谐振器中的特殊构造的二阶(2-nd阶)PT对称性,该谐振器的汇率具有两个不同的方向,该电流由内部旁路旁路库激发。我们提出的结构具有以下特殊特征:首先,旁路电容器在光谱共振中诱导耦合,使我们能够观察到对称态度之间的2阶阶相变,而无需在空间PT情况下进行第二个线圈。在这种情况下,这种特殊构建的PT对称性可以被视为合成PT对称性,它通过与不同方向的耦合模式启用。其次,通过引入两个或多个内部旁路电容器,可以实现合成的高阶PT对称系统,例如单个线圈谐振器中的三阶特殊点。这些结果将提供一个新的范式,以在合成的角度实现高阶PT对称性,以调查非炎症物理学,可以将其扩展到其他物理平台,例如光学和声学。

The exploration of non-Hermitian systems with parity-time (PT) symmetry has witnessed immense research interest both fundamentally and technologically in a wide range of subject areas in physics and engineering. One significant example of the principal emerging fields in this context is the PT symmetric wireless applications using multiple coils that are spatially separated but mutually coupled with position-dependent coupling strength. Such a spatial PT configuration limits the flexibility and miniaturization of the PT symmetric designs. As far as this is concerned, inspired by scattering induced two opposite whispering-gallery (WG) modes in an optical resonator, analogously here we experimentally demonstrate a specially constructed second-order (2-nd order) PT symmetry in a single coil resonator, whose currents with two different directions are excited by internal bypass capacitor. Our proposed structure has the following peculiar feature: First, the bypass capacitor induces coupling in spectral resonances allow us to observe a 2-nd order phase transition between symmetry regimes, without the need of a second coil in the spatial PT case. Under this circumstance, this specially constructed PT symmetry can be regarded as synthetic PT symmetry, which is enabled by coupling modes with different directions. Second, by introducing two or more internal bypass capacitors, the synthetic high-order PT symmetric system bearing such as third-order exceptional point in a single coil resonator can be realized. These results will provide a new paradigm to realize higher-order PT symmetry towards the investigation of non-Hermitian physics in a synthetic perspective, which can be extended to other physical platforms such as optics and acoustics.

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