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Nanometer-size hard magnetic ferrite exhibiting high optical-transparency and nonlinear optical-magnetoelectric effect

机译:表现出高光学透明度和非线性光磁电效应的纳米级硬磁铁氧体

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摘要

Development of nanometer-sized magnetic particles exhibiting a large coercive field (Hc) is in high demand for densification of magnetic recording. Herein, we report a single-nanosize (i.e., less than ten nanometers across) hard magnetic ferrite. This magnetic ferrite is composed of ε-Fe2O3, with a sufficiently high Hc value for magnetic recording systems and a remarkably high magnetic anisotropy constant of 7.7 × 106 erg cm−3. For example, 8.2-nm nanoparticles have an Hc value of 5.2 kOe at room temperature. A colloidal solution of these nanoparticles possesses a light orange color due to a wide band gap of 2.9 eV (430 nm), indicating a possibility of transparent magnetic pigments. Additionally, we have observed magnetization-induced second harmonic generation (MSHG). The nonlinear optical-magnetoelectric effect of the present polar magnetic nanocrystal was quite strong. These findings have been demonstrated in a simple iron oxide, which is highly significant from the viewpoints of economic cost and mass production.
机译:对于磁记录的致密化,迫切需要开发具有大矫顽力(Hc)的纳米级磁性颗粒。在此,我们报道了一种单纳米尺寸(即,宽度小于十纳米)的硬磁铁氧体。该磁性铁氧体由ε-Fe2O3组成,具有足够高的Hc值(用于磁记录系统)和7.7 high×iso106 erg cm-3的极高的磁各向异性常数。例如,8.2 nm纳米颗粒在室温下的Hc值为5.2 kOe。这些纳米粒子的胶体溶液由于2.9 eV(430 nm)的宽带隙而具有浅橙色,这表明可能存在透明的磁性颜料。此外,我们已经观察到磁化感应产生的二次谐波(MSHG)。本极性磁性纳米晶体的非线性光磁电效应非常强。这些发现已在简单的氧化铁中得到证明,从经济成本和批量生产的角度来看,这是非常重要的。

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