首页> 外文期刊>Physical Review, B. Condensed Matter >Comparative study of critical current densities and flux pinning among a flux-grown NdBa2Cu3Oy single crystal, melt-textured Nd-Ba-Cu-O, and Y-Ba-Cu-O bulks
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Comparative study of critical current densities and flux pinning among a flux-grown NdBa2Cu3Oy single crystal, melt-textured Nd-Ba-Cu-O, and Y-Ba-Cu-O bulks

机译:助熔剂生长的NdBa2Cu3Oy单晶,熔融织构的Nd-Ba-Cu-O和Y-Ba-Cu-O块体中的临界电流密度和通量钉扎的比较研究

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摘要

We have studied the field and temperature dependence of the critical current density J(c)(B,T) for a fluxgrown NdBa2Cu3Oy single crystal (Nd123SC), melt-textured Nd-Ba-Cu-O (OCMG-Nd-Ba-Cu-O), and Y-Ba-Cu-O (MPMG-Y-Ba-Cu-O) bulks. In the J(c)-T curves, an exponential-like behavior in a low-temperature region could be explained in terms of the collective flux creep model, while J(c)-T curves in a high-temperature region could well be fitted to the Kim-Anderson creep model. For the scaling of J(c)-B curves, power-law relation of J(c)proportional to Bgamma-1 is observed for all the samples in a low-field region in that the exponent gamma is roughly 1/2 for OCMG-Nd-Ba-Cu-O and MPMG-Y-Ba-Cu-O, and 1 for Nd123SC, corresponding to surface pinning and point pinning, respectively. The surface pinning is ascribed to the presence of second-phase particles. In an intermediate field region, the gamma values become almost 2 for Nd123SC and OCMG-Nd-Ba-Cu-O, showing that Delta kappa-point pinning is dominant, which presumably originates from the Nd-Ba substituted regions with depressed T-c. On the basis of our J(c)(B,T) analyses, we could classify the B-T phase diagram into several regimes of different dominant pinning mechanisms. [S0163-1829(99)04502-6]. [References: 68]
机译:我们研究了熔剂生长的NdBa2Cu3Oy单晶(Nd123SC),熔融织构Nd-Ba-Cu-O(OCMG-Nd-Ba-Cu)的临界电流密度J(c)(B,T)的场和温度依赖性-O)和Y-Ba-Cu-O(MPMG-Y-Ba-Cu-O)块。在J(c)-T曲线中,可以用集体通量蠕变模型来解释低温区域中的指数行为,而高温区域中的J(c)-T曲线很可能是符合Kim-Anderson蠕变模型。对于J(c)-B曲线的缩放,对于低场区域中的所有样本,观察到J(c)与Bgamma-1成正比的幂律关系,因为OCMG的指数gamma约为1/2 -Nd-Ba-Cu-O和MPMG-Y-Ba-Cu-O,Nd123SC为1,分别对应于表面钉扎和点钉扎。表面钉扎归因于第二相颗粒的存在。在中间场区域中,Nd123SC和OCMG-Nd-Ba-Cu-O的伽马值几乎变为2,这表明δkappa点钉扎是主要的,这大概是由T-c降低的Nd-Ba取代区域引起的。根据我们的J(c)(B,T)分析,我们可以将B-T相图分类为几种具有不同主导钉扎机制的状态。 [S0163-1829(99)04502-6]。 [参考:68]

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