论文标题
通过匡威磁性磁性效应对外部多表情的静态和动态磁化控制
Static and dynamic magnetization control of extrinsic multiferroics by the converse magneto-photostrictive effect
论文作者
论文摘要
在这项工作中,在外部多效复合材料中证明了对静态和动态磁性特性的照片描述性操纵。在光谱的蓝色区域中,通过可见光实现了光述。该复合材料由5 nm或10 nm的磁刻录Fe $ _ {81} $ ga $ _ {19} $薄膜与Piezoelectric(011)-PB(mg $ _ {1/3} $ nb $ _ {2/3} $ $ $ $ $ $ $ $ $ _3 $ -PB(Z)角度依赖磁化强度逆转性能在相反的磁磁性效应(CMPE)下大大增强或降低。用一种名为Converse Magneto-Photostostostostostrotive的耦合系数分析CMPE强度。该系数被提出为一种一般方法,用于分析和比较在匡威磁磁性效应下的不同外部多效应。它的厚度依赖性表明,CMPE强度随着Fe $ _ {81} $ ga $ _ {19} $厚度的增加而降低。然后,通过铁磁共振测量结果揭示了控制CMPE下动态磁性特性的实验证据。共振场在CMPE下移动,而它们的线宽保持恒定。此外,根据平面角度的不同,共振场偏移可能是正的或负的。对于5 nm样品,获得+5.7%的CMPE下的最大偏移。我们的研究表明,CMPE不仅可以控制静态磁力,还提供了一种有效的方法,可以控制外部多表面的动态磁性。
In this work, photostrictive manipulations of static and dynamic magnetic properties are demonstrated in an extrinsic multiferroic composite. The photostriction is achieved with visible light in the blue region of the spectrum. The composites consist of 5 nm or 10 nm magnetostrictive Fe$_{81}$Ga$_{19}$ thin films coupled to a piezoelectric (011)-Pb(Mg$_{1/3}$Nb$_{2/3}$)O$_3$-Pb(Zr,Ti)O$_3$ substrate. Angular dependent magnetization reversals properties are largely enhanced or reduced under a converse magneto-photostrictive effect (CMPE). The CMPE strength is analysed with a novel coefficient named the converse magneto-photostrictive coupling coefficient. This coefficient is proposed as a general approach to analyse and to compare different extrinsic multiferroics under the converse magneto-photostrictive effect. Its thickness dependence reveals that the CMPE strength decreases with an increase of the Fe$_{81}$Ga$_{19}$ thickness. Experimental evidence for a control of dynamic magnetic properties under CMPE is then revealed by ferromagnetic resonance measurements. Resonant fields are shifted under CMPE, whereas their linewidths remain constant. Furthermore, resonant field shifts can be either positive or negative depending on the in-plane angle. The largest shift under CMPE of +5.7 % is obtained for the 5 nm sample. Our study shows that the CMPE provides an efficient approach for a control of not only the static but also the dynamic magnetic properties in extrinsic multiferroics.