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Structure and magnetism of single-phase epitaxial gamma '-Fe4N

机译:单相外延γ'-Fe4N的结构和磁性

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摘要

Single phase epitaxial pure gamma(')-Fe4N films are grown on MgO (001) by molecular beam epitaxy of iron in the presence of nitrogen obtained from a radio frequency atomic source. The epitaxial, single phase nature of the films is revealed by x-ray diffraction and by the local magnetic environment investigated by Mossbauer spectroscopy. The macroscopic magnetic properties of the gamma(')-Fe4N films are studied in detail by means of transverse Kerr effect measurements. The hysteresis loops are consistent with the cubic atomic structure, displaying easy [100] magnetization directions. The films are single domain at remanence, and the reversal is dominated by 180degrees or 90degrees domain wall nucleation and propagation, depending on the applied field direction. When 90degrees domain walls are responsible for the magnetization reversal, this proceeds in two stages, and the measured coercive fields vary accordingly. Magnetic domain observations reveal the two distinct reversal -driven by 180degrees or 90degrees domain walls- modes displaying large domains, of the order of mm. From magnetometer techniques, the saturation magnetization, mu(0)M(s), is measured to be 1.8 T. A magneto-optical torque technique is used to obtain a value of the anisotropy constant of 2.9x10(4) J/m(3).
机译:在从射频原子源获得的氮存在下,通过铁的分子束外延在MgO(001)上生长单相外延纯gamma(')-Fe4N薄膜。薄膜的外延,单相性质通过X射线衍射和Mossbauer光谱学研究的局部磁性环境揭示。通过横向克尔效应测量详细研究了γ(Fe)-Fe4N薄膜的宏观磁性。磁滞回线与立方原子结构一致,显示出容易的[100]磁化方向。薄膜在剩磁时为单畴,而反转的方向主要取决于180度或90度畴壁成核和传播,具体取决于所施加的场方向。当90度畴壁负责磁化反转时,这将分两个阶段进行,并且测得的矫顽场会相应变化。磁畴观测揭示了两种不同的反转-由180度或90度磁畴壁驱动-显示大磁畴的模式,数量级为mm。根据磁力计技术,测得的饱和磁化强度mu(0)M(s)为1.8T。使用磁光转矩技术获得的各向异性常数值为2.9x10(4)J / m( 3)。

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