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X-ray method to study temperature-dependent stripe domains in MnAs/GaAs(001)

机译:X射线方法研究MnAs / GaAs(001)中与温度相关的条带畴

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MnAs films grown on GaAs (001) exhibit a progressive transition between hexagonal (ferromagnetic) and orthorhombic (paramagnetic) phases at wide temperature range instead of abrupt transition during the first-order phase transition. The coexistence of two phases is favored by the anisotropic strain arising from the constraint on the MnAs films imposed by the substrate. This phase coexistence occurs in ordered arrangement alternating periodic terrace steps. We present here a method to study the surface morphology throughout this transition by means of specular and diffuse scattering of soft x rays, tuning the photon energy at the Mn 2p resonance. The results show the long-range arrangement of the periodic stripe-like structure during the phase coexistence and its period remains constant, in agreement with previous results using other techniques.
机译:在GaAs(001)上生长的MnAs薄膜在较宽的温度范围内呈现出六方相(铁磁性)和正交相(顺磁性)之间的逐步过渡,而不是在一阶相变期间的突然过渡。各向异性应变有利于两相的共存,该各向异性应变是由基板对MnAs膜施加的约束引起的。此阶段共存发生在有序排列中,交替出现周期性阶跃步骤。我们在这里提出一种方法,通过软x射线的镜面和散射散射研究整个过渡过程中的表面形态,从而在Mn 2p共振下调整光子能量。结果表明,周期性条纹状结构在相共存期间的远距离排列及其周期保持恒定,这与使用其他技术的先前结果一致。

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