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Spin-Orbit Coupling versus Exchange Interaction in Actinide Metals

机译:旋转轨道耦合与滑动金属的交换相互作用

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The electronic structure of the actinide metals, Th, U, Np, Pu, Am, and Cm, is investigated using electron energy-loss spectroscopy (EELS) in a transmission electron microscope, together with many-electron spectral calculations. At the N{sub}4,5 edge, sum rule analysis gives the angular part of the spin-orbit interaction per hole, showing that while light metals (Th and U) follow LS coupling, heavier metals (Pu, Am, and Cm) follow intermediate coupling of the 5f states. The intermediate coupling is near the jj limit for Pu and Am, but strongly shifted towards the LS coupling limit for Cm. At the O{sub}4,5 edge many-electron spectral calculations show that the prepeak corresponds to a "forbidden" transition.
机译:使用透射电子显微镜中的电子能量损耗光谱(EEL)和许多电子光谱计算,研究了神光纤维素金属,Th,U,NP,PU,AM和CM的电子结构,以及许多电子光谱计算。在N {sub} 4,5边缘处,总和规则分析给出了每个孔的旋转轨道相互作用的角部,显示了光金属(Th和U)遵循LS耦合,较重的金属(PU,AM和CM) )遵循5F状态的中间耦合。中间耦合靠近PU和AM的JJ限制,但是朝向厘米的LS耦合极限强烈移位。在O {sub} 4,5边缘的许多 - 电子光谱计算表明,Prepeak对应于“禁止”的转换。

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