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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Transition metal ion substitution into the Cu(1) sites in the '123' high-temperature superconductors
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Transition metal ion substitution into the Cu(1) sites in the '123' high-temperature superconductors

机译:过渡金属离子取代成“ 123”高温超导体中的Cu(1)位

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The effects of substituting either non-magnetic or magnetic (trivalent) transition metal (TM) ions into the Cu(1) sites in the CuO chains occurring in the "123" YBa2Cu3O7 - x superconductor are studied. It is assumed that pair condensation occurs in both the 2D CuO2 planes and the 1D CuO chains, that the exchange of the spin fluctuations (SF) is responsible for the pair formation and that the order parameters in the chains and planes are coupled together by pair tunneling. Just like the case for substitution into the Cu(2) sites, the depressions of T-c due to non-magnetic and magnetic TM ions substitution into the Cu(1) sites are caused by the different ways the two type of ions act on the Cooper pairs. The non-magnetic TM ions suppress the formation of the Cooper pairs through their suppression of the SF-induced pairing interaction while the magnetic TM ions break the Cooper pairs through their aping flipping of one of the carriers. For both types of ions, the suppression of superconductivity is enhanced by the normal scattering process. [References: 25]
机译:研究了将非磁性或磁性(三价)过渡金属(TM)离​​子代入出现在“ 123” YBa2Cu3O7-x超导体中的CuO链中的Cu(1)位的影响。假定在2D CuO2平面和1D CuO链中都发生了对缩合,自旋涨落(SF)的交换负责成对的形成,并且链和平面中的顺序参数通过对耦合在一起。隧道。就像替换为Cu(2)位置的情况一样,由于非磁性和磁性TM离子替换为Cu(1)位置而导致的Tc凹陷是由两种类型的离子作用于Cooper的不同方式引起的对。非磁性TM离子通过抑制SF诱导的配对相互作用而抑制了库珀对的形成,而磁性TM离子通过载流子之一的翻转使库珀对断裂。对于这两种类型的离子,通过常规散射过程可增强对超导性的抑制。 [参考:25]

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