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Diamagnetic Currents in the Neutral He Atoms

机译:中性氦原子中的反磁电流

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摘要

The mechanism of the occurrence of intraatomic diamagnetic currents in the neutral He atoms with microscopic sizes is investigated. It is found that most of all electrons can form electron pairs originating from attractive Coulomb interactions between two electrons with opposite spins occupying the 1s atomic orbital in the neutral He atom at 298 K. Intraatomic diamagnetic currents in the neutral He atoms with microscopic sizes can be explained by such electron pairing. The transition temperature T_c~(He,1s) value at which intraatomic diamagnetic currents can disappear in each He atom is estimated. The T_c~(He,1s) values for the neutral He atoms with microscopic sizes are estimated to be much larger than the superconducting transition temperatures T_(c,BCS) values for the conventional superconductors with macroscopic sizes. This result can be understood from continuous energy levels of electronic states in conventional superconductivity with macroscopic sizes, and from discrete energy levels of electronic states in the neutral He atoms with microscopic sizes. The energy difference between the occupied and unoccupied orbitals decreases with an increase in material size and thus the second-order perturbation effect becomes more important with an increase in material size. Therefore, the mechanism of the occurrence of intraatomic diamagnetic current in the neutral He atoms suggested in this research would not be true for materials with large sizes. The dependence of electronic properties on temperature in the diamagnetic currents in the neutral He atoms with microscopic sizes is studied and compared with that in the conventional superconductivity with macroscopic sizes.
机译:研究了微观尺寸的中性He原子中原子内反磁电流发生的机理。已发现,大多数电子可以形成电子对,这些电子对源于两个电子之间的有吸引力的库仑相互作用,它们具有相反的自旋,在298 K时占据了中性He原子的1s原子轨道。中性He原子中的原子内反磁电流为用这种电子对解释。估计转变温度T_c〜(He,1s)值,在该温度下原子内反磁性电流可以在每个He原子中消失。估计具有微观尺寸的中性He原子的T_c〜(He,1s)值比具有宏观尺寸的常规超导体的超导转变温度T_(c,BCS)值大得多。从具有宏观尺寸的常规超导中的电子态的连续能级和具有微观尺寸的中性He原子中的电子态的离散能级可以理解这一结果。占据轨道和未占据轨道之间的能量差随着材料尺寸的增加而减小,因此,随着材料尺寸的增加,二次扰动效应变得更加重要。因此,这项研究中提出的在中性He原子中发生原子内反磁电流的机理对于大尺寸材料是不正确的。研究了具有微观尺寸的中性He原子中反磁电流中电子性质对温度的依赖性,并将其与具有宏观尺寸的常规超导电性中的抗磁性电流进行了比较。

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