论文标题
离子梁照射在YIG中的自旋波光学元件
Spin-Wave Optics in YIG by Ion-Beam Irradiation
论文作者
论文摘要
我们将直接聚焦的离子光束(FIB)写作作为一种实现自旋波启动设备的能力技术。结果表明,离子光束辐照以高度控制的方式以亚微米尺度改变了YIG膜的特征,从而可以设计适合所需应用的折射率的巨元指数。该技术不会物理去除材料,并且可以在具有最小的边缘损坏(与更常见的技术(例如蚀刻或铣削)相比)中快速制造高质量的修饰磁化磁化强度构造。通过实验显示许多光学设备(镜头,光栅,傅立叶域处理器)的宏伟版本,我们将这项技术设想为构建宏伟计算设备的门户,这些机能可以与其复杂性和计算能力相媲美。
We demonstrate direct focused ion beam (FIB) writing as an enabling technology for realizing spin-wave-optics devices. It is shown that ion-beam irradiation changes the characteristics of YIG films on a submicron scale in a highly controlled way, allowing to engineer the magnonic index of refraction adapted to desired applications. This technique does not physically remove material, and allows rapid fabrication of high-quality architectures of modified magnetization in magnonic media with minimal edge damage (compared to more common techniques such as etching or milling). By experimentally showing magnonic versions of a number of optical devices (lenses, gratings, Fourier-domain processors) we envision this technology as the gateway to building magnonic computing devices that rival their optical counterparts in their complexity and computational power.