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High, magnetic field independent critical currents in (Ba,K)Fe2As2 crystals

机译:(Ba,K)Fe2As2晶体中与磁场无关的高临界电流

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摘要

Each discovery of a new high temperature superconductor drives the expectation that advanced engineering of materials defect structures will enable effective vortex pinning and high values of the electrical current density. Here, we demonstrate that single crystals of the iron-based superconductor Ba0.6K0.4Fe2As2 with Tc = 37.5 K can accommodate an unprecedented large concentration of strong-pinning defects in the form of discontinuous nm-sized nanorods with no degradation of the superconducting transition temperature. At a temperature of 5 K, we find a critical current density of 5 MA/cm2 that is magnetic field independent in fields up to 7 T.
机译:每次发现新的高温超导体,人们就寄希望于对材料缺陷结构进行先进的工程设计,从而实现有效的涡旋钉扎和高电流密度值。在此,我们证明具有Tc = Ba37.5 K的铁基超导体Ba0.6K0.4Fe2As2的单晶可以容纳前所未有的高浓度的强钉扎缺陷,其形式为不连续的纳米尺寸纳米棒,并且不会降低超导转变温度。在5 K的温度下,我们发现临界电流密度为5 MA / cm 2 ,它在7 T的磁场中与磁场无关。

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