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首页> 外文期刊>Journal of Modern Physics >Macroscopic Quantum System, Highly Correlated Electron State, and High-Temperature Superconductivity in Iron Pnictides
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Macroscopic Quantum System, Highly Correlated Electron State, and High-Temperature Superconductivity in Iron Pnictides

机译:铁微粒中的宏观量子系统,高度相关的电子态和高温超导性

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The qualitative model of the high-temperature superconductivity suggested earlier for cuprates and based on the idea that the superconductivity is associated with delocalized π bonding between ions is not only confirmed by experimental data on iron pnictides but is also improved. It is shown that the FeAs layer state is similar to that of a macroscopic quantum system characterized by a sandwich-type charge distribution in which negatively charged planes are two-dimensional electron crystals of pairs and positively charged planes are formed by positively charged ions. Superconductivity in such a system is accomplished by a two-dimensional Wigner crystal of bosons condensed into one and the same state. The crystal occupies a middle position with respect to charged planes in the sandwich structure, which leads to mutual compensation of all its interactions with all charged planes. The model can prove useful for development of the theory of superconductivity taking into consideration the highly correlated state of all valence electrons that manifests itself in formation of electron crystals with strong Coulomb interactions between them.
机译:早先针对铜酸盐提出了高温超导的定性模型,并基于超导电性与离子之间的离域π键相关联的思想,不仅可以通过铁素化物的实验数据得到证实,而且可以得到改进。结果表明,FeAs层状态类似于宏观量子系统,其特征是夹心型电荷分布,其中带负电的平面是成对的二维电子晶体,带正电的平面由带正电的离子形成。这种系统中的超导性是通过将玻色子的二维维格纳晶体凝聚成一个相同的状态来实现的。晶体在夹层结构中相对于带电平面处于中间位置,这导致其与所有带电平面的所有相互作用的相互补偿。考虑到所有价电子高度相关的状态,该模型可以证明对超导电性理论的发展有用,这些价电子在形成具有强库仑相互作用的电子晶体时表现出来。

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