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Interfacial Origin of the Magnetisation Suppression of Thin Film Yttrium Iron Garnet

机译:薄膜钇铁石榴石磁化抑制的界面起源

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摘要

Yttrium iron garnet has a very high Verdet constant, is transparent in the infrared and is an insulating ferrimagnet leading to its use in optical and magneto-optical applications. Its high Q-factor has been exploited to make resonators and filters in microwave devices, but it also has the lowest magnetic damping of any known material. In this article we describe the structural and magnetic properties of single crystal thin-film YIG where the temperature dependence of the magnetisation reveals a decrease in the low temperature region. In order to understand this complex material we bring a large number of structural and magnetic techniques to bear on the same samples. Through a comprehensive analysis we show that at the substrate -YIG interface, an interdiffusion zone of only 4–6 nm exists. Due to the interdiffusion of Y from the YIG and Gd from the substrate, an addition magnetic layer is formed at the interface whose properties are crucially important in samples with a thickness of YIG less than 200 nm.
机译:钇铁石榴石具有很高的Verdet常数,在红外中是透明的,并且是一种绝缘的铁磁体,因此使其可以用于光学和磁光应用。它的高Q系数已被用于制造微波设备中的谐振器和滤波器,但它在任何已知材料中的磁阻尼也最低。在本文中,我们描述了单晶薄膜YIG的结构和磁性,其中磁化强度的温度依赖性揭示了其在低温区域的降低。为了理解这种复杂的材料,我们将大量的结构和磁性技术应用于相同的样本。通过全面的分析,我们显示在底物-YIG界面处,仅存在4-6–nm的相互扩散区​​。由于Y与YIG相互扩散,而Gd与基体相互扩散,因此在界面处形成了一个附加的磁性层,该磁性层的性质对于厚度小于200nm的YIG样品至关重要。

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