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首页> 外文期刊>Physical Review, B. Condensed Matter >GENERALIZED LAUE DYNAMICAL THEORY FOR X-RAY REFLECTIVITY AT LOW AND HIGH INCIDENCE ANGLES ON STRAINED MULTILAYERS
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GENERALIZED LAUE DYNAMICAL THEORY FOR X-RAY REFLECTIVITY AT LOW AND HIGH INCIDENCE ANGLES ON STRAINED MULTILAYERS

机译:多层板在低入射角和高入射角下的X射线反射率的广义Laue动力学理论

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In this work, we present a generalized dynamical theory for strained multilayers within the Laue formalism valid for x-ray Bragg diffraction. In the generalized theory we take into account all the four solutions of the secular equation, the asymptotic sphericity of the dispersion surface, the difference between electric and displacement fields, and the boundary conditions of continuity at the heterointerfaces for the tangential components of the electric and magnetic fields. Only the following approximations are made: to consider a two-beam case, and to neglect quadratic terms of the dielectric susceptibility. Our general equations give the correct x-ray reflectivity in the whole angular range between 0 and pi/2, i.e., also very far from the Bragg peaks. Great differences between the predictions of the conventional and generalized theories are obtained in several cases, for important features of the rocking curves, like angular position, peak intensity, and full width at half maximum of superlattice satellite or epitaxial layer peaks. We discuss in detail the following cases for which only the generalized theory describes correctly the x-ray scattering: coplanar diffraction (i) very far from the Bragg condition, (ii) near to the Bra,og condition for strong asymmetric reflections, and (iii) for highly mismatched heterostructures. [References: 43]
机译:在这项工作中,我们提出了适用于X射线布拉格衍射的Laue形式主义内的应变多层的广义动力学理论。在广义理论中,我们考虑了世俗方程的所有四个解,色散表面的渐近球形,电场和位移场之间的差异以及电和电切向分量异质界面处连续性的边界条件。磁场。仅进行以下近似计算:考虑两束情况,而忽略介电敏感性的二次项。我们的一般方程式在0到pi / 2之间的整个角度范围内(即距离布拉格峰也很远)给出了正确的X射线反射率。在某些情况下,对于摇摆曲线的重要特征,例如角位置,峰值强度以及超晶格卫星或外延层峰值的半峰全宽,在常规和广义理论的预测之间存在很大差异。我们将详细讨论以下情况,只有广义理论才能正确描述x射线散射:共面衍射(i)距离布拉格条件很远;(ii)靠近Bra.og条件的强非对称反射;以及( iii)高度错配的异质结构。 [参考:43]

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