电荷转移到cprt和镍的轴突

А. С. Москвин
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摘要

基于三维元素的化合物光学性质分析提供了有关基态和低能激发的电子结构的宝贵信息。因此,我们表明,分析铜酸盐的介电反铁磁相中的电荷转移d-d激子和亚稳低能电子-空穴EH二聚体(它们是电子-晶格弛豫后演化的结果)不仅对描述线性和非线性光学性质和光致效应非常有效,同时建立一个有前景的电荷三重体模型来描述T- la2cuo4或T ' -Nd2CuO4型铜酸盐中活性CuO2平面的低能电子结构和T-x相图,以及RNiO2型镍酸盐中的NiO2平面,以及它们随主要能量参数变化的演变。
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Экситоны с переносом заряда в ВТСП купратах и никелатах
An analysis of the optical properties of compounds based on 3d elements provides valuable information about the electronic structure of the ground state and low-energy excitations. Thus, we show that the analysis of charge-transfer d-d excitons in the dielectric antiferromagnetic phase of cuprates and metastable low-energy electron-hole EH dimers being a result of their evolution after electron-lattice relaxation, turns out to be very fruitful not only for describing linear and nonlinear optical properties and photoinduced effects, but also to develop a promising model of charge triplets to describe the low-energy electronic structure and T-x phase diagrams of active CuO2 planes in cuprates of the T-La2CuO4 or T’-Nd2CuO4 type, as well as NiO2 planes in nickelates of the RNiO2 type, and their evolution with changes in the main energy parameters.
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