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Quantum Mechanical Calculations of High-T&sub&c&/sub& Fe-Superconductors

机译:高T& c& / sub& / sub& Fe超导体

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In introduction we presented a short historical survey of the discovery of superconductivity (SC) up to the Fe-based materials that are not superconducting in a pure state. For this type of material, the transition to SC state occurs in presence of different dopants. Recently in the Fe-based materials at high pressures, the SC was obtained at room critical temperature. In this paper, we present the results of calculations of the isolated cluster representing infinitum crystal with Rh and Pd as dopants. All calculations are performed with the suite of programs Gaussian 16. The obtained results are compared with our previous results obtained for embedded cluster using Gaussian 09. In the case of embedded cluster our methodology of the Embedded Cluster Method at the MP2 electron correlation level was applied. In the NBO population analysis two main features are revealed: the independence of charge density transfer from the spin density transfer and, the presence of orbitals with electron density but without spin density. This is similar to the Anderson’s spinless holon and confirms our conclusions in previous publications that the possible mechanism for superconductivity can be the RVB mechanism proposed by Anderson for high T_(c) superconductivity in cuprates.
机译:在引言中,我们向Fe基材料的超导(SC)发现了对没有超导纯净状态的短暂的历史调查。对于这种类型的材料,在不同掺杂剂存在下发生到SC状态的过渡。最近在高压下的Fe基材料中,在室临界温度下获得SC。在本文中,我们介绍了用Rh和Pd表示Infinitum晶体的分离簇的计算结果作为掺杂剂。所有计算都是用Gaussian 16的程序套件进行的。与使用高斯09的嵌入式群集获得的结果进行了比较。在嵌入式集群的情况下,我们应用了MP2电子相关级别的嵌入式群集方法的方法。 。在NBO人口分析中,揭示了两个主要特征:充电密度转移的独立性从旋转密度转移,并且具有电子密度的轨道的存在,但没有自旋密度。这类似于安德森的无纺源清洁,并确认我们在先前的出版物中的结论,即超导性的可能机制可以是Anderson在铜酸盐中高T_(c)超导性的RVB机制。

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