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On the Role of Polarization of Oxygen Ions and Mechanism of Superconductivity in Cuprate Superconductors

机译:铜酸盐超导体中氧离子的极化作用和超导机理

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A new approach to the valence electron state in cuprate superconductors leading to a new mechanism of high-temperature superconductivity is considered. The approach takes into account specific features of the outer electron shells of the compound-forming elements and polarization of anions by cations. The polarization of anions by copper cations results in sharing of a valence electron by every two neighboring ions, which gives rise to a highly correlated state of the valence electrons and formation of a localized spin-ordered electron lattice responsible for dielectric and magnetic properties of an undoped material. It is also shown that asymmetric polarization of an anion by cations with inert gas shells transforms an unshared anion electron pair into a superconducting one by exciting it into a hybrid state. The superconducting state of the material itself results from formation and derealization of one-dimensional Wigner crystals of the excited pairs.
机译:考虑了一种新的解决铜酸盐超导体价电子态的方法,从而提出了高温超导的新机理。该方法考虑了化合物形成元素的外电子壳的特定特征以及阳离子对阴离子的极化作用。铜阳离子对阴离子的极化导致每两个相邻离子共享一个价电子,从而引起价电子高度相关的状态,并形成一个局部自旋有序的电子晶格,该晶格负责电子的介电和磁性。未掺杂的材料。还显示出带有惰性气体壳的阳离子对阴离子的不对称极化通过将未共享的阴离子电子对激发成杂化态而将其转变为超导电子对。材料本身的超导状态是由激发对的一维维格纳晶体的形成和去实现引起的。

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