Nonlinear Physics Centre and Centre for Ultra-high Bandwidth Devices for Optical Systems (CUDOS), Research School of Physics and Engineering, Australian National University, Canberra ACT 0200, Australia.
ACS Nano. 2012 Jan 24;6(1):837-42. doi: 10.1021/nn204348j. Epub 2011 Dec 23.
We propose a novel type of hybrid metal-dielectric structures composed of silicon nanoparticles and split-ring resonators for advanced control of optically induced magnetic response. We reveal that a hybrid "metamolecule" may exhibit a strong distance-dependent magnetic interaction that may flip the magnetization orientation and support "antiferromagnetic" ordering in a hybrid metamaterial created by a periodic lattice of such metamolecules. The propagation of magnetization waves in the hybrid structures opens new ways for manipulating artificial "antiferromagnetic" ordering at high frequencies.
我们提出了一种由硅纳米粒子和分裂环谐振器组成的新型混合金属-介质结构,用于对光诱导磁响应进行高级控制。我们揭示了混合“超分子”可能表现出强烈的距离相关磁相互作用,该相互作用可能翻转磁化方向,并支持由这种超分子周期性晶格构成的混合超材料中的“反铁磁”有序。在混合结构中,磁化波的传播为在高频下操纵人工“反铁磁”有序开辟了新途径。