论文标题

测量形状的铁磁体中的镁 - 光子耦合:共振频率的调整

Measuring the magnon-photon coupling in shaped ferromagnets: tuning of the resonance frequency

论文作者

del Rincon, Sergio Martinez-Losa, Gimeno, Ignacio, Perez-Bailon, Jorge, Rollano, Victor, Luis, Fernando, Zueco, David, Martinez-Perez, Maria Jose

论文摘要

腔光子和铁磁旋转激发可以以杂交体系结构相干地交换信息,并以它们的相互耦合强度设定的速度。通常通过优化电磁腔的几何形状来增强速度。在这里,我们表明,通过设置宏伟谐振器的基本频率,铁磁铁的几何形状也起着重要作用。使用聚焦的离子束图案,我们改变在低磁场工作时达到10 GHz以上的操作频率的不同薄膜样品的纵横比的纵横比。此外,我们执行宽带铁磁共振测量和空腔实验,表明可以使用开放传输线或谐振空腔来估计镁 - 光子耦合强度,从而产生非常良好的一致性。最后,我们描述了一个基于电磁和微磁模拟的简单理论框架,该框架成功地解释了实验结果。这种方法可用于设计利用任何磁静力模式的混合量子系统,以任意尺寸和形状的铁磁体激发并调整其操作条件。

Cavity photons and ferromagnetic spins excitations can exchange information coherently in hybrid architectures, at speeds set by their mutual coupling strength. Speed enhancement is usually achieved by optimizing the geometry of the electromagnetic cavity. Here we show that the geometry of the ferromagnet plays also an important role, by setting the fundamental frequency of the magnonic resonator. Using focused ion beam patterning, we vary the aspect ratio of different Permalloy samples reaching operation frequencies above 10 GHz while working at low external magnetic fields. Additionally, we perform broad band ferromagnetic resonance measurements and cavity experiments that demonstrate that the magnon-photon coupling strength can be estimated using either open transmission lines or resonant cavities, yielding very good agreement. Finally, we describe a simple theoretical framework based on electromagnetic and micromagnetic simulations that successfully accounts for the experimental results. This approach can be used to design hybrid quantum systems exploiting whatsoever magnetostatic mode excited in ferromagnets of arbitrary size and shape and to tune their operation conditions.

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