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Interstitial defects in diamond: A quantum mechanical simulation of their EPR constants and vibrational spectra

机译:钻石中的间质缺陷:欧元常数和振动光谱的量子力学模拟

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摘要

The local geometry, electronic structure, and vibrational features of three vicinal double interstitial defects in diamond, ICIC, ICIN, and ININ, are investigated and compared with those of three "simple" 100 interstitial defects, I-CC, I-CN, and I-NN, previously reported by Salustro et al. [Phys. Chem. Chem. Phys. 20, 16615 (2018)], using a similar quantum mechanical approach based on the B3LYP functional constructed from Gaussian-type basis sets, within a supercell scheme, as implemented in the CRYSTAL code. For the first time, the Fermi contact term and hyperfine coupling tensor B of the four open shell structures, ICIC, ICIN, I-CC, and I-CN, are evaluated and compared with the available experimental EPR data. For the two double interstitial defects, the agreement with experiment is good, whereas that for the single interstitials is found to be very poor, for which a likely reason is the incorrect attribution of the EPR spectra to uncertain atomic details of the micro-structure of the samples. The infrared spectra of the three double interstitial defects exhibit at least two peaks that can be used for their characterization.
机译:钻石,ICIC,icin和Inin中的三个张视性双层间缺陷的局部几何,电子结构和振动特征,并与三个“简单”100间质缺陷,I-CC,I-CN和和I-NN,以前由Salustro等人报告。 [物理。化学。化学。物理。 20,16615(2018)],使用基于由高斯型基集合的B3Lyp功能的类似量子机械方法,在超级晶片方案中,如在晶码中实现。首次,评估四个开放壳结构,ICIC,ICIN,I-CC和I-CN的FERMI接触术语和高血耦合张量B,并与可用的实验EPR数据进行比较。对于两种双层间隙缺陷,与实验的协议很好,而对于单个间隙被发现非常贫穷,可能是一种可能的理由是EPR光谱对微结构的不确定原子细节的错误归因样本。三种双间质缺陷的红外光谱表现出至少两个可用于其表征的峰值。

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