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Polar and longitudinal magneto-optical spectroscopy of bismuth substituted yttrium iron garnet films grown by pulsed laser deposition

机译:脉冲激光沉积法制备铋取代钇铁石榴石薄膜的极性和纵向磁光光谱

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摘要

Ferrimagnetic bismuth substituted yttrium iron garnet Bi_x,Y_(3_x)Fe_5O_(12) (BiYIG) films with X =1 and 2 pulsed laser deposited onto (111) Gd_3G_(a5)O_(12) (GGG) substrates were studied using magneto-optical (MO) Kerr spectroscopy in the photon energy range of 1.8-5 eV at both polar and longitudinal magnetizations. The interference at lower photon energies provided the refined film thicknesses ranging between 70 and 200 nm. The films were grown under compressive strain and displayed saturation magnetizations (fioMs) lower than that of their bulk counterparts due to the presence of nanograins forming BiYJG layers and/or magnetically dead interface layers. The trends in the MO spectra agree with those deduced from the published permittivity tensor data for BiYIG using a transfer matrix model applied to a film (BiYIG)-substrate (GGG) system. Due to the reduced μ_oM_s the predicted amplitudes are typically higher. The agreement was improved using effective medium approach or by incorporating into the model MO passive interface layers. The information on MO activity at longitudinal magnetization in the garnet layers below 100 nm presents interest for MO imaging and magnetophotonic devices. The results suggest that the MO Kerr spectroscopy combined with MO Kerr magnetometry may represent a valuable, cheap and nondestructive tool for the characterization of magnetic garnet films less than 200 nm thick.
机译:用磁光法研究了用X = 1和2脉冲激光沉积在(111)Gd_3G_(a5)O_(12)(GGG)衬底上的亚铁磁铋取代钇铁石榴石Bi_x,Y_(3_x)Fe_5O_(12)(BiYIG)膜。光学(MO)Kerr光谱,在极性和纵向磁化强度下,光子能量范围为1.8-5 eV。在较低光子能量下的干涉提供了介于70到200 nm之间的精制膜厚度。由于存在形成BiYJG层和/或磁死界面层的纳米颗粒,薄膜在压缩应变下生长,并且显示出的饱和磁化强度(fioMs)低于其体相饱和磁化强度。 MO光谱的趋势与从BiYIG的已公开的介电常数张量数据推导出的趋势一致,BiYIG使用的是应用于薄膜(BiYIG)-基底(GGG)系统的转移矩阵模型。由于减小的μ_oM_s,预测幅度通常更高。使用有效的介质方法或通过将MO被动接口层合并到模型中,改进了协议。低于100 nm的石榴石层中纵向磁化时MO活性的信息引起了MO成像和磁光子器件的兴趣。结果表明,MO Kerr光谱学与MO Kerr磁力分析相结合可能是表征小于200 nm厚度的石榴石磁性薄膜的一种有价值,便宜且无损的工具。

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  • 来源
    《Thin Solid Films》 |2011年第22期|p.8041-8046|共6页
  • 作者单位

    Charles University of Prague, Faculty of Mathematics and Physics. Ke Karlovu 3, 12116 Prague 2, Czech Republic;

    Charles University of Prague, Faculty of Mathematics and Physics. Ke Karlovu 3, 12116 Prague 2, Czech Republic;

    Charles University of Prague, Faculty of Mathematics and Physics. Ke Karlovu 3, 12116 Prague 2, Czech Republic;

    Charles University of Prague, Faculty of Mathematics and Physics. Ke Karlovu 3, 12116 Prague 2, Czech Republic;

    Department of Physics. Motilal Nehru National Institute of Technology, Uttar Pradesh, India;

    Indian Institute of Technology, Bombay, Mumbai 400 076, India;

    Indian Institute of Technology, Bombay, Mumbai 400 076, India;

    GEMaC, CNRS-UVSQ, 45 Avenue des Etats-Unis, 78035 Versailles, France;

    GEMaC, CNRS-UVSQ, 45 Avenue des Etats-Unis, 78035 Versailles, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Magnetooptic spectroscopy; Bismuth-substituted yttrium iron garnets; Effective medium theory;

    机译:磁光光谱法;铋取代钇铁石榴石;有效介质理论;

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