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First-principles calculation of electronic structures and hyperfine interactions for muonium centers in ZnO

机译:ZnO mu中心电子结构和超精细相互作用的第一性原理计算

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摘要

The first-principles Hartree-Fock cluster method is applied to investigate the possible positions and associated hyperfine properties of the muonium centers in the II-VI semiconductor ZnO. Two clusters are used to simulate the local environments around the anti-bonding (AB)() and bond-center (BC)() muonium with axial symmetry along the c-axis, to try to understand the natures of the two centers whose axially symmetric hyperfine tensors have been observed experimentally. Our results show that the muonium center at the anti-bonding site close to oxygen (AB(O))() is more stable and its charge state is +0.44, which indicates a donor state in the semiconductor, but the associated hyperfine parameters are only in reasonable order of magnitude agreement with the experiments. The results for the (BC)() center show a smaller binding energy than for the (AB(O))() center, and hyperfine parameters three orders of magnitude larger than the experiment but still an order of magnitude smaller than for free muonium. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 14]
机译:应用第一性原理Hartree-Fock聚类方法研究II-VI半导体ZnO中the中心的可能位置和相关的超精细性质。两个聚类用于模拟沿c轴具有轴对称性的抗键(AB)()和键中心(BC)()around周围的局部环境,以试图了解该键的性质。实验观察到了两个中心的轴向对称超精细张量。我们的结果表明,靠近氧(AB(O))()的反键处的center中心更稳定,其电荷态为+0.44,表明半导体中的施主态,但相关的超精细态参数仅在合理的数量级上与实验一致。 (BC)()中心的结果显示出比(AB(O))()中心更小的结合能,超精细参数比实验大三个数量级,但仍然小一个数量级而不是免费的mu。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:14]

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