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首页> 外文期刊>Journal of Applied Physics >Pulsed inductive measurement of ultrafast magnetization dynamics in interlayer exchange coupled NiFe/Ru/NiFe films
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Pulsed inductive measurement of ultrafast magnetization dynamics in interlayer exchange coupled NiFe/Ru/NiFe films

机译:层间交换耦合NiFe / Ru / NiFe薄膜中超快磁化动力学的脉冲感应测量

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Pulsed inductive microwave magnetometer (PIMM), conventional ferromagnetic resonance (FMR), and vector network analyzer FMR (VNA-FMR), as well as quasistatic methods such as a magneto-optic Kerr effect magnetometer and a vibrating sample magnetometer, have been used for complementary studies of interlayer exchange coupled Si/Ta/NiFe(30 nm)/Ru(t)/NiFe(30 nm)/Ta films of variable Ru thickness t. The coupling constants were determined from the measured magnetization curves by fitting them to simulated ones. The dynamics measurements revealed two spin wave modes, which could be identified as optical and acoustical ones. The optical mode changes significantly with the coupling, whereas the slight change of the acoustical mode is due to different relative orientations of the layer magnetizations. Numerical simulations helped to identify optical and acoustical modes. The intensity of these two modes changes with the bias field and coupling. Using VNA-FMR the optical mode could be observed up to higher bias fields than with the PIMM at small excitation angles. While varying the pulse field up to 150 Oe using the PIMM, the intensity ratio of optical and acoustical modes changed and additional modes occurred.
机译:脉冲感应微波磁力仪(PIMM),常规铁磁共振(FMR)和矢量网络分析仪FMR(VNA-FMR)以及准静态方法(如磁光克尔效应磁力仪和振动样品磁力仪)已用于可变厚度Ru的层间交换耦合Si / Ta / NiFe(30 nm)/ Ru(t)/ NiFe(30 nm)/ Ta膜的补充研究。通过将测得的磁化曲线拟合为模拟磁化曲线,可以确定耦合常数。动力学测量揭示了两种自旋波模式,可以将其识别为光学和声学模式。光学模式随耦合而显着变化,而声学模式的细微变化归因于层磁化强度的不同相对方向。数值模拟有助于识别光学和声学模式。这两种模式的强度随偏置场和耦合而变化。与PIMM相比,使用VNA-FMR可以在较小的激发角下观察到更高的偏置场。当使用PIMM将脉冲场变化至150 Oe时,光学和声学模式的强度比发生了变化,并出现了其他模式。

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