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Resonant magneto-optical properties of Fe near its 2p levels: Measurement and applications

机译:2p附近的铁的共振磁光特性:测量和应用

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Resonant magneto-optical properties of Fe are considered across its 2p core levels. General equivalence of the classical magneto-optical formalism (dielectric tensor) and the resonant atomic scattering factor in the electric dipole approximation is shown in describing purl charge contributions as well as first- and second-order magnetic contributions. Thickness effects in transmission absorption measurements are considered and shown to be minimized in Faraday magneto-optical rotation measurements. Transmission absorption and Faraday rotation spectra obtained using linear polarization are normalized to the complex refractive index and atomic scattering factor for pure circular modes and their polarization average, showing that the pure magnetic part is roughly 50% of the pure charge part at the L-3 resonance. Magnetic linear dichroism (Voigt effect) measured in transmission is only 2% of the pure charge scattering at resonance. These magneto-optical constants are used to calculate important polarization-dependent experimental quantities including penetration depths, critical angles for total external reflection, Kerr rotation and intensity spectra, and interference and distorted-wave effects that modulate scattering intensities. The results reveal the importance of knowledge of these properties and use of full magneto-optical formalisms in planning and interpreting experiments involving resonant 2p optical properties of the 3d transition metals. [References: 58]
机译:Fe的2p磁芯能级考虑了共振磁光特性。在描述pur电荷贡献以及一阶和二阶磁性贡献时,显示了经典磁光形式主义(介电张量)和共振原子散射因子在电偶极子近似中的一般等效性。在法拉第磁光旋转测量中,透射吸收测量中的厚度效应已被考虑并显示为最小。使用线性极化获得的透射吸收和法拉第旋转光谱被归一化为纯圆形模式的复数折射率和原子散射因子及其极化平均值,表明在L-3处,纯磁性部分约为纯电荷部分的50%谐振。透射中测得的磁性线性二向色性(Voigt效应)仅为共振时纯电荷散射的2%。这些磁光常数用于计算与偏振有关的重要实验量,包括穿透深度,全外反射临界角,克尔旋转和强度谱以及调制散射强度的干涉和畸变波效应。结果表明,在计划和解释涉及3d过渡金属共振2p光学性质的实验时,充分了解这些性质以及使用完整的磁光形式主义非常重要。 [参考:58]

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