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◆ Inorganic Chemistry2026-02-06· Chemistry

Local Electronic Structure, Magnetic Properties, and Optical Transitions of Nd:YAG: An Integrated Quantum Chemical Methods and Magnetic Resonance Study

Md. Ashraful Islam, Jonas Koppe, Gabriel Balavoine, Andrew J. Pell

原始摘要(英文原文)· Original abstract
Lanthanide ions embedded in crystalline hosts are central to modern technologies, where their unique magnetic and optical properties arise from spin–orbit coupling shaped by the local coordination environment. Here, we provide a unified computational–experimental framework to probe these interactions for Nd 3+ in yttrium aluminum garnet (Nd:YAG). Multiconfigurational variational–perturbative complete active space-based calculations with spin–orbit treatments accurately capture the crystal field splitting, magnetic anisotropy, and intra-4f optical transitions. Complementary low-temperature EPR and ultrahigh-field, fast magic-angle spinning paramagnetic NMR experiments benchmark the calculations and reveal how subtle structural features tune the electronic and magnetic response properties. By linking magnetic observables with optical transitions through the same local environment, our study establishes a general strategy for predicting and rationalizing the multifunctional behavior of lanthanide-doped materials.
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Local Electronic Structure, Magnetic Properties, and Optical Transitions of Nd:YAG: An Integrated Quantum Chemical Methods and Magnetic Resonance Study — 科研速览 Science Skim