论文标题
$ v_b^ - $ hexagonal Boron氮化物的光致发光和光化学
Photoluminescence and photochemistry of the $V_B^-$ defect in hexagonal boron nitride
论文作者
论文摘要
计算了$ v_b^ - $ v_b^ - $ hexagonal硝酸硼的广泛光化学和光谱特性量子的产量。新实验结果比以前识别的固有光谱带宽较小,用频谱狭窄的术语解释,而零音波的转移却被jahn-teller效应所引起缺陷状态的开放性质和混合量子力学/分子力学方案实现了5763-ATOM模拟。
Extensive photochemical and spectroscopic properties of the $V_B^-$ defect in hexagonal boron nitride are calculated, concluding that the observed photoemission associated with recently observed optically-detected magnetic resonance is most likely of (1)3E" to (1)3A2' origin. Rapid intersystem crossing from the defect's triplet to singlet manifolds explains the observed short excited-state lifetime and very low quantum yield. New experimental results reveal smaller intrinsic spectral bandwidths than previously recognized, interpreted in terms spectral narrowing and zero-phonon-line shifting induced by the Jahn-Teller effect. Different types of computational methods are applied to map out the complex triplet and singlet defect manifolds, including the doubly ionised formulation of the equation-of-motion coupled-cluster theory that is designed to deal with the open-shell nature of defect states, and mixed quantum-mechanics/molecular-mechanics schemes enabling 5763-atom simulations. Two other energetically feasible spectral assignments from amongst the singlet and triplet manifolds are considered, but ruled out based on inappropriate photochemical properties.