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首页> 外文期刊>Journal of Applied Physics >Transition from quasistatic to ferromagnetic resonance regime in giant magnetoimpedance
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Transition from quasistatic to ferromagnetic resonance regime in giant magnetoimpedance

机译:巨磁阻抗中从准静态到铁磁共振的转变

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摘要

Detailed measurements of giant magnetoimpedance (GMI) in an amorphous ribbon and a magneticonmagnetic multilayer are presented for frequencies up to 3 GHz. Through this frequency range, the transition from quasistatic to dynamic regime of GMI can be clearly distinguished, due to the appearance of the ferromagnetic resonance (FMR). The unambiguous experimental evidence presented mediates between conflicting interpretations of GMI: the ones that assume the existence of FMR even for low frequencies and the ones that consider that it is irrelevant. The frequency at which the transition takes place is shown to be related with the width of the resonance, which is substantially different for both samples. It is concluded that the large increase of permeability caused by the ferromagnetic resonance can be advantageous for GMI-based devices only for samples with a small, very well-defined perpendicular anisotropy.
机译:给出了高达3 GHz频率的非晶带和磁性/非磁性多层膜中巨磁阻抗(GMI)的详细测量结果。在此频率范围内,由于铁磁共振(FMR)的出现,可以清楚地区分从准静态到动态GMI的过渡。明确的实验证据在GMI的相互矛盾的解释之间进行了调解:一种假设即使在低频下也存在FMR,另一种认为这与FMI不相关。示出了发生转变的频率与谐振的宽度有关,这对于两个样本而言是实质上不同的。结论是,由铁磁共振引起的磁导率的大幅度增加仅对具有很小的,非常明确的垂直各向异性的样品的基于GMI的设备有利。

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