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Facile route to magnetophotonic crystals by infiltration of 3D inverse opals with magnetic nanoparticles

机译:通过磁性纳米粒子渗透3D反蛋白石轻松获得磁光子晶体的途径

摘要

We report here on the fabrication and characterization of magnetophotonic crystals obtained by infiltrating magnetic nanoparticles (maghemite) into silica-based inverse opals. Good quality opals, with adjustable photonic and magnetic characteristics have been obtained by this method. Magnetic and magneto-optic measurements, performed by using SQUID magnetometry and Kerr and Faraday effects, have been used to monitor the magnetic filling of the opals. It is observed that the Kerr rotation is not proportional to the overall magnetization of the magnetophotonic crystal. Possible scenarios for this unexpected result are discussed. © 2009 Elsevier B.V. All rights reserved.
机译:我们在这里报告通过磁纳米颗粒(磁赤铁矿)渗透到基于二氧化硅的反蛋白石中获得的磁光子晶体的制造和表征。通过这种方法已经获得了具有可调节的光子和磁特性的高质量蛋白石。通过使用SQUID磁力测定法以及Kerr和Faraday效应进行的磁和磁光测量已用于监视蛋白石的磁性填充。可以看出,克尔旋转与磁光子晶体的总磁化强度不成比例。讨论了此意外结果的可能情况。 ©2009 Elsevier B.V.保留所有权利。

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