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Reduced effective magnetization and damping by slowly relaxing impurities in strained ?-Fe2O3 thin films

机译:通过缓慢松弛应变?-Fe2O3薄膜中的杂质来降低有效磁化强度和阻尼

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摘要

Magnetically ordered insulators are of key interest for spintronics applications, but most of them have not yet been explored in depth regarding their magnetic properties, in particular with respect to their dynamic response. We study the static and dynamic magnetic properties of epitaxially strained gamma-Fe2O3 (maghemite) thin films grown via pulsed-laser deposition on MgO substrates by SQUID magnetometry and cryogenic broadband ferromagnetic resonance experiments. SQUID magnetometry measurements reveal hysteretic magnetization curves for magnetic fields applied both in- and out of the sample plane. From the magnetization dynamics of our thin films, we find a small negative effective magnetization in agreement with a strain induced perpendicular magnetic anisotropy. Moreover, we observe a non-linear evolution of the ferromagnetic resonance-linewidth as a function of the microwave frequency and explain this finding with the so-called slow relaxor model. We investigate the magnetization dynamics and non-linear damping mechanisms present in our samples as a function of frequency and temperature and in particular, observe a sign change in the effective magnetization from the transition of the magnetic anisotropy from a perpendicular easy axis to an easy in-plane anisotropy for reduced temperatures. Its nonlinear damping properties and strain-induced perpendicular anisotropy render gamma-Fe2O3 an interesting material platform for spintronics devices. Published under an exclusive license by AIP Publishing.
机译:磁有序绝缘体是自旋电子学应用的关键兴趣,但其中大多数尚未深入探索其磁性,特别是动态响应。我们通过SQUID磁力测量法和低温宽带铁磁共振实验研究了通过脉冲激光沉积在MgO衬底上生长的外延应变γ-Fe2O3(磁赤铁矿)薄膜的静态和动态磁性。SQUID 磁力测量可显示施加在样品平面内外的磁场的滞后磁化曲线。从薄膜的磁化动力学中,我们发现一个小的负有效磁化强度与应变诱导的垂直磁各向异性一致。此外,我们观察到铁磁共振线宽作为微波频率函数的非线性演变,并用所谓的慢弛豫模型来解释这一发现。我们研究了样品中存在的磁化动力学和非线性阻尼机制作为频率和温度的函数,特别是观察了有效磁化强度的符号变化,从磁各向异性从垂直的易轴过渡到降低温度的易平面各向异性。其非线性阻尼特性和应变诱导的垂直各向异性使γ-Fe2O3成为自旋电子学器件的有趣材料平台。在AIP Publishing的独家许可下出版。

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