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New method for measurement of complex magnetic permeability in the millimeter-wave range, part II: hexaferrites

机译:测量毫米波范围内复磁导率的新方法,第二部分:六铁氧体

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Magneto-optical methods were applied for the first time in millimeter wavelength range for characterization of anisotropic ferrites. The principles of the free-space magneto-optical method are presented and the new experimental procedures leading to the determination of millimeter-wave permeability and permittivity in anisotropic ferrite materials are described. The measurements were performed with a computer-controlled W-band (70-120 GHz) quasi-optical-waveguide bridge. A backward-wave oscillator was used as a source of tunable millimeter wave radiation. The oriented Sr-hexaferrite ceramic was selected for the verification of millimeter-wave magneto-optical method. The magneto optical measurements in transverse configuration revealed strong anomalous dispersion in the millimeter-wave refractive index spectrum for Sr hexaferrite, mainly due to the frequency variation of magnetic permeability. Computer simulations revealed a good agreement of measured parameters with known data for Sr hexaferrite. It was shown that the free-carrier absorption (/spl sigma//spl sim/0.05 /spl Omega//sup -1/ cm/sup -1/) and magnetic permeability contribute to the relatively high millimeter-wave losses in hexaferrite ceramics. The frequency dependence of Faraday rotation in the millimeter-wave range was measured, and the experimental results are discussed. The results presented in this paper demonstrate that this new magneto-optical method is capable of providing accurate dielectric and magnetic data in the millimeter-wavelength range.
机译:磁光方法首次在毫米波波长范围内用于表征各向异性铁氧体。介绍了自由空间磁光法的原理,并介绍了测定各向异性铁氧体材料中毫米波磁导率和介电常数的新实验程序。使用计算机控制的W波段(70-120 GHz)准光波导桥进行测量。反向波振荡器被用作可调毫米波辐射源。选择取向的Sr-六铁氧体陶瓷用于毫米波磁光方法的验证。横向配置的磁光测量结果表明,六价锶铁氧体在毫米波折射率光谱中存在强烈的反常色散,这主要是由于磁导率的频率变化所致。计算机仿真显示,六价铁锶铁氧体的测量参数与已知数据有很好的一致性。结果表明,自由载流子的吸收(/ spl sigma // spl sim / 0.05 / spl Omega // sup -1 / cm / sup -1 /)和磁导率导致六铁氧体陶瓷中较高的毫米波损耗。测量了法拉第旋转在毫米波范围内的频率依赖性,并讨论了实验结果。本文介绍的结果表明,这种新的磁光方法能够在毫米波长范围内提供准确的介电和磁数据。

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