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Effects of non-magnetic phase and deposition temperature on magnetic properties of FePt-MgO granular thin films on single-crystal MgO substrate

机译:非磁性相和沉积温度对单晶MgO基体上FePt-MgO颗粒状薄膜磁性能的影响

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(FePt)(100-x)(MgO)(x) granular thin films were fabricated by using co-sputtering on single crystal MgO substrate at different deposition temperatures followed by a high-temperature annealing. The adding MgO was found to have the following effects: 1) high fraction of MgO phase (70 vol%) degraded the L1(0) phase transformation; 2) FePt grains embedded in MgO matrix were well separated, leading to minimized exchange interaction between the FePt grains; 3) 55 vol% fraction of MgO was optimal for the L1(0)-FePt phase formation with highest coercivity, due to the formation of granular structure, which was also verified by comparing the structure and properties of FePt/MgO bilayer films. Deposition temperature has also effect on the magnetic properties of FePt MgO films. Room temperature deposition did not result in the Llo phase even after annealing at 800 degrees C. However, the magnetic properties of the films deposited at 200 degrees C were better than those deposited at 300 degrees C. The low coercivity resulted from elevated deposition temperature was attributed to the thermal expansion and competitively growth among FePt and MgO grains. The results revealed that adding appropriate amount of MgO (55 vol%) can be achieved by finding a proper deposition temperature (200 degrees C), well-defined granular L1(0)-FePt films with fine grain distribution, high coercivity and small domain size. (C) 2016 Elsevier B.V. All rights reserved.
机译:(FePt)(100-x)(MgO)(x)颗粒状薄膜是通过在不同沉积温度下在单晶MgO衬底上进行共溅射,然后进行高温退火而制成的。发现添加的MgO具有以下作用:1)高比例的MgO相(70体积%)降低了L1(0)相的转化; 2)嵌入MgO基质中的FePt晶粒被很好地分离,从而使FePt晶粒之间的交换相互作用最小化; 3)由于颗粒结构的形成,MgO的55 vol%的比例最适合具有最高矫顽力的L1(0)-FePt相的形成,这也通过比较FePt / MgO双层膜的结构和性能来验证。沉积温度也影响FePt MgO薄膜的磁性。即使在800摄氏度下进行退火,室温沉积也不会导致Llo相。但是,在200摄氏度下沉积的薄膜的磁性优于在300摄氏度下沉积的薄膜。归因于FePt和MgO晶粒之间的热膨胀和竞争性增长。结果表明,通过找到合适的沉积温度(200摄氏度),定义明确的粒状L1(0)-FePt薄膜,晶粒细小,高矫顽力和小畴,可以实现添加适量的MgO(55%(体积))。尺寸。 (C)2016 Elsevier B.V.保留所有权利。

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