锁定在二氧化硅基体中的钴铁氧体在平面上的取向对磁光性能的影响

Nandiguim Lamaï, D. Allassem, A. M. Nanimina, Djimako Bongo, Togdjim Jonas
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引用次数: 0

摘要

在这项工作中,我们根据二氧化硅基体中15nm尺寸的钴铁氧体的取向讨论了磁光性质,并与对20nm尺寸的钴铁氧体的研究进行了比较。这一测量表明,可以通过在固体基体中创建磁性取向来增加法拉第效应的残余,这对于自极化元件的生产很有趣。此外,15nm的残余比20nm的残余更大。因此,垂直于层平面施加的凝胶场在测量期间施加的磁场方向上产生磁矩的优先方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of Magneto-optical Properties Depending on the Orientation in the Plane of Cobalt Ferrite Locked in a Silica Matrix
In this work, we discuss the magneto-optical properties according to the orientation of 15nm-sized cobalt ferrite blocked in a silica matrix in comparison to the study done on 20nm-sized cobalt ferrite. This measurement shows that it is possible to increase the remanence of the Faraday effect by creating a magnetic orientation in the solid matrix, which is interesting for the production of self-polarized components. In addition, this remanence is greater for 15 nm than for 20 nm.A gelation field applied perpendicular to the plane of the layer therefore produces a preferential orientation of the magnetic moments in the direction of the field applied during the measurement.
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