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Doping dependence of the vortex dynamics in single-crystal superconducting NaFe1-xCoxAs

机译:掺杂涡流动力学在单晶超导中的依赖性Nafe1-Xcoxas

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摘要

We investigate the doping dependence of flux pinning in superconducting NaFe1-xCoxAs (x = 0.01, 0.03, 0.05 and 0.07) single crystals grown by the Bridgman method. The electronic specific heat displays a pronounced anomaly in a sample series at superconducting transition temperature, which hardly shows any residual part at low temperature. We found that Co doping plays an important role in signifying the secondary peak in the magnetic hysteresis of optimally doped (x = 0.03) and heavily doped (x = 0.05, 0.07) crystals. Furthermore, the dependence of the relaxation rate S = vertical bar d lnM / d ln t vertical bar on magnetic field and temperature exhibits a decreasing trend within a certain range corresponding to the secondary peak effect in the optimally and heavily doped samples. The magnetic relaxation rate combined with the Maley analysis of the current-dependent creep energy shows a single-vortex pinning in the lightly doped sample dominant at low applied fields, and plastic pinning at high applied fields, without showing a secondary peak. However, in the optimally and heavily doped samples, the magnetic relaxation rate and U(J) isothermal analysis show that the collective pinning that dominates below H-peak crosses over to plastic pinning for fields above H-peak.
机译:我们研究了通过Bridgman方法生长的超导Nafe1-Xcoxas(X = 0.01,0.03,0.05和0.05和0.07)单晶的助熔剂固定的掺杂依赖性。电子特定热量在超导转变温度下在样品系列中显示明显的异常,这几乎不显示低温下的任何残留部分。我们发现CO掺杂在磁滞后在最佳掺杂(x = 0.03)和重掺杂(x = 0.05,0.07)晶体中表示重要作用。此外,弛豫率S =垂直条D LNM / D LN T垂直杆在磁场和温度上的依赖性在与最佳掺杂样品中的二次峰值效应相对应的特定范围内表现出降低的趋势。与电流依赖性蠕变能量的Maley分析相结合的磁性弛豫率在低施加的场上的轻微掺杂样品中的单涡钉钉形成,并且在高施加的场处的塑料钉扎,而不显示次级峰。然而,在最佳和重掺杂的样品中,磁性松弛率和U(J)等温分析表明,在H峰值下方占据H峰的集体钉扎在H峰上方的塑料钉扎上。

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