论文标题
微波腔镁中耦合阶段的表现
Manifestation of the coupling phase in microwave cavity magnonics
论文作者
论文摘要
微波光子和镁之间的相互作用已被充分理解,并且源自旋转和磁场之间的Zeeman耦合。有趣的是,镁/光子相互作用伴随着通常可以忽略的相位因子。但是,在旋转波近似下,如果两种磁杆模式同时将两个空腔共振二进对,则该阶段不能忽略,因为它会改变系统的物理。我们考虑两个这样的系统,每个系统都在磁体/光子耦合强度之一的符号不同。这种简单的差异源自系统中的各个耦合阶段,显示出可以保存或破坏混合光子/镁质系统的两个潜在应用,即暗模式记忆和空腔介导的耦合。该系统中耦合阶段的可观察结果类似于离散的Pancharatnam-Berry相的表现,这可能对量子信息处理有用。
The interaction between microwave photons and magnons is well understood and originates from the Zeeman coupling between spins and a magnetic field. Interestingly, the magnon/photon interaction is accompanied by a phase factor which can usually be neglected. However, under the rotating wave approximation, if two magnon modes simultaneously couple with two cavity resonances, this phase cannot be ignored as it changes the physics of the system. We consider two such systems, each differing by the sign of one of the magnon/photon coupling strengths. This simple difference, originating from the various coupling phases in the system, is shown to preserve, or destroy, two potential applications of hybrid photon/magnon systems, namely dark mode memories and cavity-mediated coupling. The observable consequences of the coupling phase in this system is akin to the manifestation of a discrete Pancharatnam-Berry phase, which may be useful for quantum information processing.