论文标题

平价时间对称偶极耦合的波导和镁晶体中的镁动力学

Magnon dynamics in parity-time-symmetric dipolarly coupled waveguides and magnonic crystals

论文作者

Wang, Xi-guang, Schulz, Dominik, Guo, Guang-hua, Berakdar, Jamal

论文摘要

我们考虑了两个偶性耦合磁条带的宏伟特性,它们都沉积在具有强旋转轨耦合的正常导电基板上。底物中的电荷电流作用于带有自旋轨道扭矩的相邻磁体上,从而导致旋转波的宏伟阻尼或抗体,从而导致两种磁条纹的增益损失耦合。整个设置被证明显示出典型的平等时间(PT)对称系统的功能。现象证明了可以在包括可重构的宏伟二极管和逻辑设备在内的宏伟设备中功能化的现象。研究了替代条纹设计和PT对称,周期性的磁质纹理。分析和完整的数值分析确定了特殊点(EPS)出现的条件,其中磁性增益和损失是平衡的,并且证据了非雷磁磁化的传播,并增强了EPS周围的木元兴奋。此外,偶极耦合被证明会引入波矢量依赖性的PT对称行为。提出和模拟PT对称的镁晶体,我们显示如何通过材料设计将EPS及相关现象转向特定的波形矢量。该现象为基于宏伟的通信和计算设备提供了其他工具。

We consider the magnonic properties of two dipolarly coupled magnetic stripes, both deposited on a normal conductive substrate with strong spin-orbit coupling. A charge current in the substrate acts on the adjacent magnets with spin-orbit torques, which result in magnonic damping or antidamping of the spin waves, and hence a gain-loss coupling of the two magnetic stripes. The whole setup is demonstrated to exhibit features typical for parity-time (PT) symmetric systems. Phenomena are demonstrated that can be functionalized in magnonic devices, including reconfigurable magnonic diodes and logic devices. Alternative stripes designs and PT-symmetric, periodic, coupled magnonic textures are studied. Analytical and full numerical analysis identify the conditions for the appearance of exceptional points (EPs), where magnonic gain and loss are balanced and evidence nonreciprocal magnon propagation and enhanced magnon excitation around EPs. Furthermore, the dipolar coupling is shown to bring in a wave vector-dependent PT-symmetric behavior. Proposing and simulating a PT-symmetric magnonic crystal, we show how EPs and hence associated phenomena can be steered to a particular wave vector in a gaped spectrum via material design. The phenomena offer additional tools for magnonic-based communication and computational devices.

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