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Nonlinear ferromagnetic resonance and foldover in yttrium iron garnet thin films-inadequacy of the classical model

机译:钇铁石榴石薄膜的非线性铁磁共振和折叠-经典模型的不足

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A thin-film resonator structure has been used for quantitative measurements of ferromagnetic resonance foldover and the associated bistable power response for yttrium iron garnet (YIG) thin films. The resonator consisted of a 1-mm by 1-mm-square, 4.9 /spl mu/m-thick epitaxial YIG film on top of a 50 /spl mu/m-wide, 3-mm-long microstrip transducer. A static magnetic field of 3200 Oe was applied perpendicular to the film. Low- order magnetostatic forward volume wave standing modes were excited at low power levels in the -20-dBm range and detected as resonance dips in reflected power versus frequency spectra over the range 4-5 GHz. At powers in the 0- to +15-dBm range, these dips showed foldover and bistable response characteristics for increasing and decreasing frequency or power sweeps. The use of 1-10-/spl mu/s-wide pulses instead of continuous-wave (CW) excitation resulted in the consistent disappearance of the foldover and bistability characteristics. The frequency sweep pulse data at fixed power reproduced the down-sweep CW results, and the pulse data for both increasing and decreasing power at fixed frequency reproduced the increasing-power CW results. A quantitative theoretical analysis demonstrates that observed foldover and bistable response characteristics are much weaker than predicted from the classical precession foldover mechanism proposed by Anderson and Suhl, in which the decrease in the static component of the magnetization drives the response. The up-sweep and down-sweep foldover frequency jumps both occur sooner than predicted by this classical mechanism and the calculated foldover profiles are much more severe than the data show.
机译:薄膜谐振器结构已用于定量测量铁磁共振石榴石(YIG)薄膜的铁磁共振折叠和相关的双稳态功率响应。该谐振器由一个50 mm / spl mu / m宽,3 mm长的微带换能器顶部的1mm x 1 mm平方的4.9 / spl mu / m厚的外延YIG膜组成。垂直于膜施加3200Oe的静磁场。低阶静磁正向体积波驻波模式在-20 dBm范围内的低功率水平下被激发,并被检测为反射功率与4-5 GHz范围内的频谱的共振下降。在0至+15 dBm范围内的功率下,这些下陷显示出用于提高和降低频率或功率扫描的折叠和双稳态响应特性。使用1-10- / spl mu / s宽的脉冲而不是连续波(CW)激发会导致折叠和双稳性特性始终消失。固定功率下的扫频脉冲数据再现了下扫频CW结果,固定频率下功率增加和减小的脉冲数据均再现了升功率CW结果。定量理论分析表明,观察到的褶皱和双稳态响应特性比安德森和苏尔提出的经典进动褶皱机理所预测的要弱得多,在经典的旋进褶皱机理中,磁化静态分量的减少驱动了响应。向上扫描和向下扫描的折叠频率跳跃都比这种经典机制预测的发生得更快,并且计算的折叠轮廓比数据显示的严重得多。

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