首页> 外文期刊>The European physical journal, B. Condensed matter physics >Coherence transition in granular YBa2Cu3O7-delta, YBa2Cu2.95Zn0.05O7-delta, and YBa1.75Sr0.25Cu3O7-delta superconductors
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Coherence transition in granular YBa2Cu3O7-delta, YBa2Cu2.95Zn0.05O7-delta, and YBa1.75Sr0.25Cu3O7-delta superconductors

机译:YBa2Cu3O7-δ,YBa2Cu2.95Zn0.05O7-δ和YBa1.75Sr0.25Cu3O7-δ超导体中的相干跃迁

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We have studied experimentally the electrical magneto-conductivity near the superconducting transition of YBa2Cu3O7-delta, YBa2 (Cu2.95Zn0.05)O7-delta and Y(Ba1.75Sr0.25)Cu3O7-delta polycrystalline samples. The measurements were performed in magnetic fields ranging from 0 to 400 Oe applied parallel to the current orientation. The results show that the resistive transition of these systems proceeds in two stages. The pairing transition occurs at the bulk critical temperature T-c, where superconductivity is stabilized within small and homogeneous regions of the sample generically called grains. The regime of approach to the zero resistance state reveals the occurrence of a coherence transition at a lower temperature T-c0. This transition is related to the connective nature of the granular samples and is controlled by fluctuations of the order-parameter phase of individual grains. Our experiments show that the Zn-doping, besides depressing the pairing critical temperature, strongly enlarges the temperature range dominated by effects related to the coherence transition. The substitution of Ba by Sr causes only a small reduction of T-c, but also enhances significantly the effects related to the grain coupling phenomenology. In general, our results indicate that these impurity substitutions in YBa2Cu3O7-delta produce or magnify the granularity at a microscopic level, enhancing the effects of phase fluctuations in the conductivity near the transition.
机译:我们已经通过实验研究了YBa2Cu3O7-δ,YBa2(Cu2.95Zn0.05)O7-δ和Y(Ba1.75Sr0.25)Cu3O7-δ多晶样品超导转变附近的电磁导率。在平行于电流方向施加的0至400 Oe的磁场中进行测量。结果表明,这些系统的电阻转换分为两个阶段。配对转变发生在本体临界温度T-c处,在该温度下,超导性在样品的小而均匀区域(通常称为晶粒)内保持稳定。接近零电阻状态的方式揭示了在较低的温度T-c0下发生了相干转变。这种转变与颗粒状样品的连接性质有关,并且受单个晶粒的有序参数相位波动的控制。我们的实验表明,Zn掺杂除了降低配对临界温度外,还大大扩大了由与相干转变相关的效应所支配的温度范围。用Sr取代Ba只会引起T-c的小幅降低,但也会显着增强与晶粒耦合现象有关的效应。通常,我们的结果表明,YBa2Cu3O7-δ中的这些杂质替代物会在微观水平上产生或放大粒度,从而增强了过渡附近电导率的相位波动的影响。

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