RIKEN SPring-8 Center, 1-1-1 Kouto, Sayo-cho, Sayo-gun, Hyogo, 679-5148, Japan.
Japan Synchrotron Radiation Research Institute, 1-1-1 Kouto, Sayo-cho, Sayo-gun, Hyogo, 679-5198, Japan.
Nat Commun. 2023 Jul 17;14(1):4262. doi: 10.1038/s41467-023-39967-4.
High sensitivity of the Kβ fluorescence spectrum to electronic state is widely used to investigate spin and oxidation state of first-row transition-metal compounds. However, the complex electronic structure results in overlapping spectral features, and the interpretation may be hampered by ambiguity in resolving the spectrum into components representing different electronic states. Here, we tackle this difficulty with a nonlinear resonant inelastic X-ray scattering (RIXS) scheme, where we leverage sequential two-photon absorption to realize an inverse process of the Kβ emission, and measure the successive Kα emission. The nonlinear RIXS reveals two-dimensional (2D) Kβ-Kα fluorescence spectrum of copper metal, leading to better understanding of the spectral feature. We isolate 3d-related satellite peaks in the 2D spectrum, and find good agreement with our multiplet ligand field calculation. Our work not only advances the fluorescence spectroscopy, but opens the door to extend RIXS into the nonlinear regime.
Kβ 荧光光谱对电子态的高灵敏度被广泛用于研究第一过渡金属化合物的自旋和氧化态。然而,复杂的电子结构导致光谱特征重叠,并且在将光谱解析为代表不同电子态的分量时可能会因解释的不明确而受到阻碍。在这里,我们通过一种非线性共振非弹性 X 射线散射(RIXS)方案来解决这个难题,在该方案中,我们利用顺序双光子吸收来实现 Kβ 发射的逆过程,并测量连续的 Kα 发射。非线性 RIXS 揭示了铜金属的二维(2D)Kβ-Kα 荧光光谱,从而更好地理解了光谱特征。我们在二维光谱中分离出与 3d 相关的卫星峰,并发现与我们的多体配体场计算吻合较好。我们的工作不仅推进了荧光光谱学的发展,而且为将 RIXS 扩展到非线性领域开辟了道路。