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Nonlinear Microwave Effects on Iron Based Microstrip Filter

机译:铁基微带滤波器的非线性微波效应

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Nonlinear effects in magnetic films are a subject of growing interest. The onset of parametric instability translates into practical power limits for microwave devices. Nearly all high-power studies were done in ferrites; recently, An investigated Permalloy. However, no work has been performed on planar devices or on iron films. Here, we investigate the transmission of cw microwaves in a 6-mm-long, 13-mum-wide and 200-nm-thick iron-based microstrip notch filter in the frequency domain. At a particular field, there are three regions in the transmission response. Up to a threshold power of Pcrit, the differential absorption of ferromagnetic resonance (FMR) is nearly constant as a function of input power. Above Pcrit, the sample absorption decreases significantly as the power is increased. In addition, we observe a subsidiary absorption (SA) peak at a frequency above that of the FMR. We observed butterfly-like curves (Pcrit versus applied static magnetic field H), similar to ferrites, for FMR as well as for the subsidiary absorption. We compare the strength of the critical rf field in Fe, YIG, and Permalloy. These numbers indicate that Fe in a microstrip geometry has a much higher power handling capability. Finally, our structures can also be used as a power limiter. The SA can be significantly increased at high powers, thus limiting the transmission in the frequency range where the SA occurs. The usual FMR peak can be used as a small-signal suppressor
机译:磁性膜中的非线性效应日益引起人们的关注。参数不稳定的发生转化为微波设备的实际功率极限。几乎所有的高功率研究都是在铁氧体中完成的。最近,安调查坡莫合金。然而,尚未在平面装置或铁膜上进行任何工作。在这里,我们在频域中研究了长6毫米,宽13毫米,厚200纳米的铁基微带陷波滤波器中连续波微波的传输。在特定的领域,传输响应中包含三个区域。高达Pcrit的阈值功率时,铁磁谐振(FMR)的差分吸收几乎恒定为输入功率的函数。高于Pcrit,样品吸收随功率的增加而显着降低。此外,我们在高于FMR的频率处观察到一个辅助吸收(SA)峰。我们观察到了类似于铁氧体的FMR以及辅助吸收的蝴蝶状曲线(Pcrit与施加的静磁场H)。我们比较了Fe,YIG和坡莫合金中的关键rf场的强度。这些数字表明,微带几何形状中的Fe具有更高的功率处理能力。最后,我们的结构也可以用作功率限制器。高功率时SA可以显着增加,从而限制了SA发生的频率范围内的传输。通常的FMR峰可用作小信号抑制器

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