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首页> 外文期刊>Photonics and Nanostructures: Fundamentals and Applications >Properties of magnetic photonic crystals in the visible spectral region and their performance limitations
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Properties of magnetic photonic crystals in the visible spectral region and their performance limitations

机译:可见光谱区中磁性光子晶体的特性及其性能限制

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摘要

We report on the results of computer modelling and performance analysis of the optical and magneto optical (MO) characteristics of one-dimensional magnetic photonic crystals (MPC) of several classic design types (having either a single structure defect, or a number of these), designed for applications in the visible spectral region. The calculations are performed accounting for the real levels of optical absorption achievable in existing MO materials which currently demonstrate the best MO quality (bismuth-substituted ferrite garnets). We consider Bi2Dy1Fe4Ga1O12 as the base material for use within quarter-wave thick MO layers of MPC; silica is used for the non-magnetic transparent quarter-wave layers. The achieved results can be used to clarify the nature of the differences that exist between the expected practical potential of MPCs in integrated photonics, and the actual attained experimental results. Our results show that in MPCs optimized for light intensity modulation applications, in the red spectral region (near 650 nm), the achievable levels of optical transmission are limited to about 30%. This coincides spectrally with the peaks of Faraday rotation reaching their maxima at about 25 degrees, with further transmission increases possible in the near-infrared region. Larger Faraday rotation angles are only achievable currently in structures or single film layers with reduced transmission. (C) 2017 Elsevier B.V. All rights reserved.
机译:我们报告了几维磁性光子晶体(MPC)的多维磁性光子晶体(MPC)的计算机建模和性能分析的结果(具有单一结构缺陷,或其中的数量) ,专为可见光谱区域中的应用而设计。对现有MO材料中可实现的最佳光学吸收的实际水平进行计算,该莫材料目前展示了最佳Mo质量(铋替代的铁氧体Garnet)。我们认为Bi2dy1Fe4Ga1O12作为基础材料,用于MPC的四分之一波厚的Mo层;二氧化硅用于非磁性透明四分之一波层。所达到的结果可用于阐明在集成光子学中MPCS预期实际潜力之间存在的差异的性质,以及实际获得的实验结果。我们的结果表明,在针对光强度调制应用的MPCS优化,在红色光谱区域(接近650nm)中,可实现的光传输水平限制为约30%。这一致地与法拉第旋转的峰值略微达到其最大值在大约25度,在近红外区域中的进一步变速器增加。较大的法拉第旋转角度仅可实现在具有减小传输的结构或单胶片层中。 (c)2017 Elsevier B.v.保留所有权利。

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    Russian Acad Sci Inst Radio Engn &

    Elect 11 Mohovaya St Moscow 125009 Russia;

    Russian Acad Sci Inst Radio Engn &

    Elect 11 Mohovaya St Moscow 125009 Russia;

    Edith Cowan Univ Electron Sci Res Inst 270 Joondalup Dr Joondalup WA 6027 Australia;

    Edith Cowan Univ Electron Sci Res Inst 270 Joondalup Dr Joondalup WA 6027 Australia;

    Edith Cowan Univ Electron Sci Res Inst 270 Joondalup Dr Joondalup WA 6027 Australia;

    Moscow Inst Phys &

    Technol 9 Inst Per Dolgoprudnyi 141700 Russia;

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  • 正文语种 eng
  • 中图分类 光学;
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