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Enhanced pinning in high-temperature superconducting cuprate single crystals at low magnetic field

机译:低磁场下高温超导铜酸盐单晶的增强钉扎

摘要

Low density flux dynamics in Nd based cuprate (NdBa₂Cu₃O₇₋x) HTSC single crystals trapped in ≈1 Oe range DC magnetic fields were investigated for the first time. Complex measurements of time, temperature and field dependence of magnetization were performed. Using the results obtained and the Anderson-Kim model the normalized magnetization relaxation rate S and the averaged effective pinning potential U were calculated. We show a significant increase in the effective pinning potential in comparison with measurements performed in high magnetic fields for similar cuprate single crystals formerly. In a wide enough range of temperatures close to Tc (0.72≤ T/Tc≤ 0.93) it has been shown that the doping of NdBa₂Cu₃O₇₋x single crystals with calcium atoms leads to an increase of the averaged effective pinning potential with an insignificant decreasing of the critical temperature.
机译:首次研究了在约1 Oe范围的DC磁场中捕获的Nd基铜酸盐(NdBa 2Cu₃O₇₋x)HTSC单晶的低密度通量动力学。进行了时间,温度和磁场强度的复杂测量。使用获得的结果和Anderson-Kim模型,计算归一化的磁化弛豫率S和平均有效钉扎电势U。与以前在强磁场中对类似铜酸盐单晶进行的测量相比,我们显示了有效钉扎电位的显着提高。研究表明,在接近Tc的足够宽的温度范围内(0.72≤T /Tc≤0.93),用钙原子掺杂NdBa 2 Cu 3O₇₋x单晶会导致平均有效钉扎电势的增加,而对Tc的影响却很小。临界温度。

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