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Resonant inelastic x-ray incarnation of Young’s double-slit experiment

机译:杨氏双缝实验的共振非弹性X射线化身

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Young’s archetypal double-slit experiment forms the basis for modern diffraction techniques: The elastic scattering of waves yields an interference pattern that captures the real-space structure. Here, we report on an inelastic incarnation of Young’s experiment and demonstrate that resonant inelastic x-ray scattering (RIXS) measures interference patterns, which reveal the symmetry and character of electronic excited states in the same way as elastic scattering does for the ground state. A prototypical example is provided by the quasi-molecular electronic structure of insulating Basub3/subCeIrsub2/subOsub9/sub with structural Ir dimers and strong spin-orbit coupling. The double “slits” in this resonant experiment are the highly localized core levels of the two Ir atoms within a dimer. The clear double-slit-type sinusoidal interference patterns that we observe allow us to characterize the electronic excitations, demonstrating the power of RIXS interferometry to unravel the electronic structure of solids containing, e.g., dimers, trimers, ladders, or other superstructures.
机译:杨的原型双缝实验构成了现代衍射技术的基础:波浪的弹性散射产生了一种干涉图,可以捕获真实空间结构。在这里,我们报道了Young实验的非弹性化身,并证明了共振非弹性x射线散射(RIXS)可以测量干涉图,这些干涉图以与弹性散射对基态相同的方式揭示了电子激发态的对称性和特征。绝缘Ba 3 CeIr 2 O 9 具有结构性Ir二聚体和强自旋轨道的准分子电子结构提供了一个典型的例子耦合。此共振实验中的双“缝”是二聚体中两个Ir原子的高度局部化的核心能级。我们观察到的清晰的双缝正弦波干涉图样使我们能够表征电子激发,证明RIXS干涉测量法可以揭示含有例如二聚物,三聚物,梯子或其他上部结构的固体的电子结构。

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