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Ultra-wide Band (10 MHz- 26 GHz) Permeability Measurements of Magnetic Films.

机译:磁性膜的超宽带(10 MHz- 26 GHz)磁导率测量。

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Magnetic materials are the necessary components of the modern rf components. The demand for higher communication speed such as the upcoming 5G network requires higher operation frequency of rf components. For example, the future spectrum band of mobile network will be extended above 24 GHz [1]. Permeability measurements provide a basis for the design and characterization of magnetic materials and the development of RF devices. However, permeability measurement results and commercially available permeameters have been limited to 9GHz or below [2]-[7]. Conventional broadband permeameters use a vector network analyzer (VNA), and a pick-up coil or an electric short [2], [3], or a broadband transmission line [4], [6] for magnetically exciting the materials under test. Inductance changes are measured at zero magnetic field and at saturation magnetic field through a vector network analyzer for extracting the permeability spectrum. The bandwidth of Pick-up coil is limited to several hundred MHz. Transmission-lines [4]-[6] are widely used for broadband permeameters. However, the transmission-line type permeameters are noisy in the frequency range below 100MHz due to the low inductance. In addition, all these broadband permeameters based on vector network analyzers are expensive, and not reliable in measuring thin films or materials with low permeability because of the low signal to noise ratio (SNR). In this article, we demonstrate a new type of permemeter for ultra-wide band permeability measurements with significantly enhanced signal to noise ratio (SNR), and demonstrate the measurements on a 50nm FeGaB film up to 22GHz and an ultra-thin 2nm NiFe film. This permeameter enables the characterization of the complex permeability between 10MHz-26GHz, as well as many other typical magnetic parameters including linewidth, saturation magnetization, effective anisotropy field, Gilbert damping, and inhomogeneous linewidth broadening. In addition, the new permeability measurement system shows 40~50 dB higher SNR over the conventional permeameters.
机译:磁性材料是现代射频组件的必要组件。诸如即将到来的5G网络等对更高通信速度的需求要求射频组件的工作频率更高。例如,移动网络的未来频谱带将扩展到24 GHz以上[1]。磁导率测量为磁性材料的设计和表征以及射频设备的开发提供了基础。但是,磁导率测量结果和市售的渗透仪仅限于9GHz或以下[2]-[7]。常规的宽带磁导率计使用矢量网络分析仪(VNA)和拾波线圈或电气短路[2],[3]或宽带传输线[4],[6]对被测材料进行磁激励。通过矢量网络分析仪在零磁场和饱和磁场下测量电感变化,以提取磁导率谱。拾波线圈的带宽限制为几百兆赫兹。传输线[4]-[6]被广泛用于宽带渗透仪。但是,由于电感值低,在低于100MHz的频率范围内,传输线型磁导计会产生噪声。另外,所有这些基于矢量网络分析仪的宽带渗透仪价格昂贵,并且由于信噪比(SNR)低,因此在测量具有低磁导率的薄膜或材料时不可靠。在本文中,我们演示了一种用于超宽带磁导率测量的新型渗透计,其信噪比(SNR)大大增强,并演示了在高达22GHz的50nm FeGaB膜和2nm超薄NiFe膜上的测量。该磁导计能够表征10MHz至26GHz之间的复磁导率,以及许多其他典型的磁参数,包括线宽,饱和磁化强度,有效各向异性场,吉尔伯特阻尼和不均匀的线宽展宽。此外,新的磁导率测量系统的信噪比比传统的渗透仪高40〜50 dB。

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