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Low-Lying Electronic States of CuAu

机译:CuAu的低电态

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摘要

Coinage metal diatomic molecules are building blocks for nanostructured materials, electronic devices, and catalytically or photochemically active systems that are currently receiving lively interest in both fundamental and applied research. The theoretical study presented here elucidates the electronic structure in the ground and several low-lying excited states of the diatomic molecule CuAu that result from the combination of the atoms in their ground states nd(10)(n + 1)s(1) S-2 and lowest excited d-hole states nd(9)(n + 1)s(2) D-2 (n = 3 for Cu, n = 5 for Au). Full and smooth potential energy curves, obtained at the multireference configuration interaction (MRCI) level of theory, are presented for the complete set of the thus resulting 44 Lambda-S terms and 86 Omega terms. Our approach is based on a scalar relativistic description using the Douglas-Kroll-Hess (DKH) Hamiltonian, with subsequent perturbative inclusion of spin-orbit (SO) coupling via the spin-orbit terms of the Breit-Pauli (BP) Hamiltonian. The Omega terms span an energy interval of about 7 eV at the ground state's equilibrium distance. Spectroscopic constants, calculated for all terms, are shown to accurately reproduce the observation for those nine terms that are experimentally known.
机译:造币金属双原子分子是纳米结构材料,电子设备以及催化或光化学活性系统的基础,这些系统目前在基础研究和应用研究中都引起了人们的浓厚兴趣。在此进行的理论研究阐明了双原子分子CuAu的基态和几个低激发态的电子结构,这些原子是由处于其基态nd(10)(n + 1)s(1)S的原子结合而成的-2和最低激发d空穴状态nd(9)(n +1)s(2)D-2(对于Cu,n = 3,对于Au,n = 5)。给出了由此产生的44个Lambda-S项和86个Omega项的完整集合的完整和平滑的势能曲线,该曲线是在多参考配置相互作用(MRCI)理论水平上获得的。我们的方法基于使用Douglas-Kroll-Hess(DKH)哈密顿量的标量相对论描述,随后通过Breit-Pauli(BP)哈密顿量的自旋轨道项微扰地包含了自旋轨道(SO)耦合。欧米茄项在基态的平衡距离处跨越约7 eV的能量间隔。对于所有项计算的光谱常数显示为可以准确地再现实验已知的这九项的观察结果。

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