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Non-reciprocal devices using attenuated total reflection and thin film magnetic layered structures

机译:使用衰减全反射和薄膜磁性分层结构的不可逆器件

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摘要

There is need for non-reciprocal devices such as circulators and isolators. Although such devices are common at frequencies below 10 GHz, there is a lack of compact, low-weight, devices at higher microwave frequencies. This paper examines the non-reciprocal behavior associated with attenuated total reflection (ATR) for multi-layered dielectric and magnetic structures. Non-reciprocal behaviors produced by ATR have been explored for semi-infinite magnetic materials. This paper focuses on ATR behavior with magnetic films of finite thickness, from thick layers of around 3 cm to thin layers of about 1 μm. The results show significant non-reciprocity even for magnetic layers less than 0.1 cm thick, with reflection loss differences of more than 30 dB between positive and negative signal propagation. Results are presented for yttrium iron garnet and M type barium hexagonal ferrites. The two materials allow nonreciprocal behavior at different frequencies, 5-20 GHz for the garnet and 45-80 GHz for the hexagonal ferrite.
机译:需要不可逆的设备,例如循环器和隔离器。尽管这样的设备在低于10 GHz的频率上很常见,但在微波频率较高的情况下却缺少紧凑,重量轻的设备。本文研究了多层介电和磁结构与衰减全反射(ATR)相关的不可逆行为。对于半无限磁性材料,已经探究了ATR产生的不可逆行为。本文着重于有限厚度的磁性膜的ATR行为,厚度从大约3 cm的厚层到大约1μm的薄层。结果表明,即使对于厚度小于0.1 cm的磁性层,也存在明显的不可逆性,正负信号传播之间的反射损耗差异大于30 dB。给出了钇铁石榴石和M型钡六角铁氧体的结果。两种材料在不同频率下都具有不可逆的行为,石榴石为5-20 GHz,六角形铁氧体为45-80 GHz。

著录项

  • 来源
    《Journal of Applied Physics》 |2011年第v110n5期|p.053912.1-053912.8|共8页
  • 作者

    T. J. Fal; R. E. Camley;

  • 作者单位

    Center for Magnetism and Magnetic Nanostructures, University of Colorado at Colorado Springs, Colorado Springs, Colorado 80933-7150, USA;

    Center for Magnetism and Magnetic Nanostructures, University of Colorado at Colorado Springs, Colorado Springs, Colorado 80933-7150, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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