首页> 外文期刊>Applied Superconductivity, IEEE Transactions on >Structural and Transport Properties of the $( hbox{Bi}_{1.6}hbox{Pb}_{0.5})(hbox{Sr}_{2-x}hbox{Lu}_{x})hbox{Ca}_{1.1}hbox{Cu}_{2.1}hbox{O}_{8 + delta}$ Superconductor
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Structural and Transport Properties of the $( hbox{Bi}_{1.6}hbox{Pb}_{0.5})(hbox{Sr}_{2-x}hbox{Lu}_{x})hbox{Ca}_{1.1}hbox{Cu}_{2.1}hbox{O}_{8 + delta}$ Superconductor

机译:$(hbox {Bi} _ {1.6} hbox {Pb} _ {0.5})(hbox {Sr} _ {2-x} hbox {Lu} _ {x})hbox {Ca} _的结构和传输性质{1.1} hbox {Cu} _ {2.1} hbox {O} _ {8 + delta} $超导体

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摘要

The effects of Lu-doping on phase evolution, microstructure, electrical, and superconducting properties of Bi-2212 have been studied. The results show that Lu+3 ions enter into the crystal structure in place of Sr+2 ions and, hence, reduce the hole concentration in the electronic structure of the system. Lu-doping results in the reduction of c-axis length and increases the Josephson coupling between the Cu-O2 layers at lower Lu-contents. The critical temperature Tc and the critical current density Jc are significantly enhanced for optimum Lu concentration. The variations in the electrical and superconducting properties are due to the structural and electronic inhomogeneities and changes in charge carrier concentration due to Lu-doping in the (Bi, Pb)-2212 superconductor.
机译:研究了Lu掺杂对Bi-2212的相变,微结构,电学和超导性能的影响。结果表明,Lu + 3离子代替Sr + 2离子进入晶体结构,因此降低了系统电子结构中的空穴浓度。 Lu掺杂导致c轴长度的减少,并在较低Lu含量下增加了Cu-O2层之间的约瑟夫森耦合。临界温度Tc和临界电流密度Jc显着提高,以获得最佳的Lu浓度。电和超导特性的变化是由于结构和电子的不均匀性,以及由于(Bi,Pb)-2212超导体中的Lu掺杂而导致的载流子浓度变化。

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