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纳米级 Co 反点格子中光诱导可调磁动力学。

Optically induced tunable magnetization dynamics in nanoscale co antidot lattices.

机构信息

Department of Condensed Matter Physics and Material Sciences, S. N. Bose National Centre for Basic Sciences, Block JD, Sector III, Salt Lake, Kolkata 700 098, India.

出版信息

ACS Nano. 2012 Apr 24;6(4):3397-403. doi: 10.1021/nn300421c. Epub 2012 Apr 6.

Abstract

We report the time-domain measurements of optically induced precessional dynamics in a series of Co antidot lattices with fixed antidot diameter of 100 nm and with varying lattice constants (S) between 200 and 500 nm. For the sparsest lattice, we observe two bands of precessional modes with a band gap, which increases substantially with the decrease in S down to 300 nm. At S = 200 nm, four distinct bands with significant band gaps appear. The numerically calculated mode profiles show various localized and extended modes with the propagation direction perpendicular to the bias magnetic field. We numerically demonstrate some composite antidot structures with very rich magnonic spectra spreading between 3 and 27 GHz based upon the above experimental observation.

摘要

我们报告了一系列 Co 反点晶格在光诱导进动动力学的时域测量结果,这些反点晶格具有固定的反点直径为 100nm,晶格常数(S)在 200nm 至 500nm 之间变化。对于最稀疏的晶格,我们观察到两个进动模式带隙,随着 S 的减小(降至 300nm),带隙显著增加。在 S = 200nm 时,出现了四个具有显著带隙的不同的带。数值计算的模式分布显示了具有与偏置磁场垂直的传播方向的各种局域和扩展模式。我们基于上述实验观察,数值演示了一些具有非常丰富的磁子谱的复合反点结构,其频谱分布在 3GHz 至 27GHz 之间。

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