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首页> 外文期刊>Physical Review, B. Condensed Matter >RARE-EARTH ION SIZE EFFECT ON RESISTIVITY, SUSCEPTIBILITY, AND SUPERCONDUCTIVITY OF RBA(2)CU(3-X)ZN(X)O(7-Y) (R=YB, ER, Y, DY, GD, EU, SM, AND ND)
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RARE-EARTH ION SIZE EFFECT ON RESISTIVITY, SUSCEPTIBILITY, AND SUPERCONDUCTIVITY OF RBA(2)CU(3-X)ZN(X)O(7-Y) (R=YB, ER, Y, DY, GD, EU, SM, AND ND)

机译:稀土离子尺寸对RBA(2)CU(3-X)ZN(X)O(7-Y)的电阻率,磁化率和超导性的影响(R = YB,ER,Y,DY,GD,EU,SM和ND)

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摘要

A systematic study of Zn doping on the resistivity rho, dc susceptibility chi, and superconducting T-c of RBa(2)Cu(3-x)Zn(x)O(7-y) systems (R=Yb, Er Y, Dy, Gd, Eu, Sm, and Nd, and 0 less than or equal to x less than or equal to 0.3) is reported. X-ray powder diffraction (XRD) shows that all samples consist essentially of a single phase and retain the orthorhombic structure in the range of 0 less than or equal to x less than or equal to 0.3 (except for R=Yb in the range of 0 less than or equal to x less than or equal to 0.15). By analyzing our Raman spectra and XRD data, Zn atoms are found more likely to substitute on Cu(2) sites. Doping with Zn on the Cu site in these systems causes a rapid nearly linear decrease of T-c as Zn content increases. The reduction of T-c for RBa(2)Cu(3-x)Zn(x)O(7-y), is found to depend strongly on the ionic radius of the rare-earth element R. This effect resembles the ion size effect on T-c in R(1-x)Pr(x)Ba(2)Cu(3)O(7-y), where Pr substitutes on the R site, and in RBa(2)Cu(3-x)Ga(x)O(7-y), where Ga substitutes on the Cu(1) sites in Cu-O chains, although in the RBa(2)Cu(3-x)Zn(x)O(7-y) systems Zn is found to be more likely to substitute on the Cu(2) sites in Cu-O-2 planes. The suppression of superconductivity by zinc and the rare-earth ion size effect on T-c in these systems is interpreted in terms of a Mott spin bipolaron model. [References: 80]
机译:Zn掺杂对RBa(2)Cu(3-x)Zn(x)O(7-y)体系的电阻率rho,直流磁化率chi和超导Tc的系统研究(R = Yb,Er Y,Dy, Gd,Eu,Sm和Nd,以及0小于或等于x小于或等于0.3)。 X射线粉末衍射(XRD)显示,所有样品基本上都由单相组成,并且在0小于或等于x小于或等于0.3的范围内保持正交结构(除了R = Yb在0小于或等于x小于或等于0.15)。通过分析我们的拉曼光谱和XRD数据,发现Zn原子更可能取代Cu(2)位置。在这些系统中,在铜位点上掺杂锌会导致T-c随锌含量的增加而迅速线性下降。发现RBa(2)Cu(3-x)Zn(x)O(7-y)的Tc降低很大程度上取决于稀土元素R的离子半径。此效应类似于离子尺寸效应在R(1-x)Pr(x)Ba(2)Cu(3)O(7-y)中的Tc上,其中Pr取代了R位,在RBa(2)Cu(3-x)Ga( x)O(7-y),尽管在RBa(2)Cu(3-x)Zn(x)O(7-y)系统Zn中,Ga替代了Cu-O链中Cu(1)的位置被发现更有可能替代在Cu-O-2平面上的Cu(2)网站上。在这些系统中,锌对超导性的抑制作用以及稀土离子尺寸对T-c的影响可以通过Mott自旋双极子模型来解释。 [参考:80]

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