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Curie temperature, exchange integrals, and magneto-optical properties in off-stoichiometric bismuth iron garnet epitaxial films

机译:非化学计量比的铋铁石榴石外延膜中的居里温度,交换积分和磁光特性

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摘要

We have studied the influence of the stoichiometry on the structural, magnetic, and magneto-optical properties of bismuth iron garnet (Bi3Fe5O12) thin films grown by pulsed laser deposition. Films with different stoichiometries have been obtained by varying the Bi/Fe ratio of the target and the oxygen pressure during deposition. Stoichiometry variations influence the Curie temperature T-C by tuning the (Fe)-O-[Fe] geometry: TC increases when the lattice parameter decreases, contrary to what happens in the case of stoichiometric rare-earth iron garnets. The thermal variation of the magnetization, the Faraday rotation, and the Faraday ellipticity have been analyzed in the frame of the Neel two-sublattice magnetization model giving energies of -48 K (4.1 meV), -29 K (2.5 meV), and 84 K (7.3 meV) for the three magnetic exchange integrals j(aa), j(dd), and j(ad), respectively. Magneto-optical spectroscopy linked to compositional analysis by Rutherford backscattering spectroscopy shows that Bi and/or Fe deficiencies also affect the spectral variation (between 1.77 and 3.1 eV). Our results suggest that bismuth deficiency has an effect on the magneto-optical response of the tetrahedral Fe sublattice, whereas small iron deficiencies affect predominantly the magneto-optical response of the octahedral sublattice.
机译:我们已经研究了化学计量学对通过脉冲激光沉积法生长的铋铁石榴石(Bi3Fe5O12)薄膜的结构,磁性和磁光性质的影响。通过改变靶材的Bi / Fe比和沉积过程中的氧气压力,获得了具有不同化学计量比的薄膜。化学计量变化通过调节(Fe)-O- [Fe]几何形状影响居里温度T-C:当晶格参数减小时,TC增加,这与化学计量稀土铁石榴石的情况相反。在Neel两子格磁化模型的框架中分析了磁化,法拉第旋转和法拉第椭圆率的热变化,给出了-48 K(4.1 meV),-29 K(2.5 meV)和84的能量三个磁交换积分j(aa),j(dd)和j(ad)的K(7.3 meV)。磁光光谱法与卢瑟福背散射光谱法的成分分析相联系,表明Bi和/或Fe的缺乏也影响光谱变化(在1.77和3.1 eV之间)。我们的结果表明,铋缺乏对四面体Fe亚晶格的磁光响应有影响,而小的铁缺陷主要影响八面体亚晶格的磁光响应。

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