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Spectrometer based real-time magnetic Faraday rotation spectroscopy of Bi-YIG thin films

机译:基于光谱仪的Bi-YIG薄膜实时法拉第旋转磁能谱

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摘要

In this work, we have investigated the bismuth-substituted yttrium iron garnet (Bi-YIG) thin films prepared on glass substrate by modified metal-organic decomposition method. Real-time Faraday rotation spectrometer was used to characterize the magneto-optical properties of Bi-YIG films. The reliability of the measurement system and optimized analyzer setup was confirmed by comparing the Jones matrix calculations and measured results. The effect of annealing condition on the structural, magnetic and magneto-optical properties was investigated. A clear garnet-phase without secondary phase was observed for the Bi-YIG films annealed above 800 degrees C. Faraday rotation spectra of these films reveal the correlation between their crystallinity and magneto-optical properties. The highest Faraday rotation angle of -3.1 degrees/mu m was achieved for 800 degrees C annealed sample. Simultaneous evaluation of real-time Faraday rotation spectra and the corresponding hysteresis loops can establish a path for the application of time-resolved magneto-optical spectroscopic analysis of magnetic thin films.
机译:在这项工作中,我们研究了通过改良的金属有机分解法在玻璃基板上制备的铋取代钇铁石榴石(Bi-YIG)薄膜。实时法拉第旋转光谱仪用于表征Bi-YIG薄膜的磁光特性。通过比较琼斯矩阵的计算结果和测量结果,可以确定测量系统和优化分析仪设置的可靠性。研究了退火条件对结构,磁和磁光性能的影响。在800摄氏度以上退火的Bi-YIG薄膜中观察到清晰的石榴石相,没有次级相。这些薄膜的法拉第旋转光谱揭示了其结晶度与磁光特性之间的相关性。对于800摄氏度的退火样品,法拉第旋转角度最高,为-3.1度/微米。同时评估法拉第实时旋转光谱和相应的磁滞回线可以为磁性薄膜的时间分辨磁光光谱分析的应用建立一条路径。

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