论文标题
应变辅助磁化切换在COFE2O4/SRRUO3/PMNPT HetRostructures的有序纳米磁体中
Strain assisted magnetization switching in ordered nanomagnets of CoFe2O4/SrRuO3/PMNPT hetrostructures
论文作者
论文摘要
我们已经探索了纳米cofe2O4/srruo3/pmn-pt ppt异质结构中的电场控制磁化。在脉冲激光沉积过程中,使用纳米杆式掩盖模式化方法在PMN-PT底物(铁电和压电)上开发有序的铁磁CFO纳米座(〜300 nm的横向尺寸)。纳米结构揭示了通过将压电剂从压电PMN-PT底物转移到CFO中的单个域CFO纳米模块中电场诱导的磁化反转。此外,通过使用X射线磁圆形二色性(XMCD)分析了CFO纳米磁体的电场调制自旋结构。 XMCD分析揭示了电场poled CoFe2O4纳米模块中八面体和四面体位点上的阳离子(Fe3+/CO2+)重新分布,从而确立了应变诱导的磁电磁耦合效应。 COFE2O4/SRRUO3/PMN-PT纳米结构结构通过以非挥发性方式应用选择性正和负电场来证明ME耦合系数(α)的多级切换。说明了两个稳定状态的α稳定状态约106秒,可以用来将数字数据存储在非挥发性存储器设备中。因此,纳米型结构中的电压控制的磁化是通往节能高密度存储器设备的发明的路径。
We have explored the electric field controlled magnetization in the nanodot CoFe2O4/SrRuO3/PMN-PT heterostructures. Ordered ferromagnetic CFO nanodots (~300 nm lateral dimension) are developed on the PMN-PT substrate (ferroelectric as well as piezoelectric) using a nanostencil-mask pattering method during pulsed laser deposition. The nanostructures reveal electric field induced magnetization reversal in the single domain CFO nanodots through transfer of piezostrains from the piezoelectric PMN-PT substrate to the CFO. Further, electric field modulated spin structure of CFO nanomagnets is analysed by using X-ray magnetic circular dichroism (XMCD). The XMCD analysis reveals cations (Fe3+/Co2+) redistribution on the octahedral and tetrahedral site in the electric field poled CoFe2O4 nanodots, establishing the strain induced magneto-electric coupling effects. The CoFe2O4/SrRuO3/PMN-PT nanodots structure demonstrate multilevel switching of ME coupling coefficient (α) by applying selective positive and negative electric fields in a non-volatile manner. The retention of two stable states of α is illustrated for ~106 seconds, which can be employed to store the digital data in non-volatile memory devices. Thus the voltage controlled magnetization in the nanodot structures leads a path towards the invention of energy efficient high-density memory devices.