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Enhanced critical current density in the pressure-induced magnetic state of the high-temperature superconductor FeSe

机译:高温超导体FeSe的压感磁态下的临界电流密度提高

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摘要

We investigate the relation of the critical current density ( J c) and the remarkably increased superconducting transition temperature ( T c) for the FeSe single crystals under pressures up to 2.43?GPa, where the T c is increased by ~8?K/GPa. The critical current density corresponding to the free flux flow is monotonically enhanced by pressure which is due to the increase in T c, whereas the depinning critical current density at which the vortex starts to move is more influenced by the pressure-induced magnetic state compared to the increase of T c. Unlike other high- T c superconductors, FeSe is not magnetic, but superconducting at ambient pressure. Above a critical pressure where magnetic state is induced and coexists with superconductivity, the depinning J c abruptly increases even though the increase of the zero-resistivity T c is negligible, directly indicating that the flux pinning property compared to the T c enhancement is a more crucial factor for an achievement of a large J c. In addition, the sharp increase in J c in the coexisting superconducting phase of FeSe demonstrates that vortices can be effectively trapped by the competing antiferromagnetic order, even though its antagonistic nature against superconductivity is well documented. These results provide new guidance toward technological applications of high-temperature superconductors.
机译:我们研究了在高达2.43?GPa的压力下,FeSe单晶的临界电流密度(J c )与超导转变温度(T c )显着增加的关系。 ,其中T c 增加了〜8?K / GPa。由于T c 的增加,压力使与自由磁通量流相对应的临界电流密度单调增加,而涡旋开始移动的去钉化临界电流密度则受到更大的影响。压力诱导的磁态与T c 的增加相比。与其他高T c 超导体不同,FeSe不是磁性的,而是在环境压力下超导的。在感应磁态并与超导共存的临界压力以上,即使零电阻率T c 的增加可以忽略不计,固定销J c 也会突然增加,直接表明与T c 增强相比,磁通钉扎特性是实现大J c 的更关键的因素。此外,在FeSe共存的超导相中J c 的急剧增加表明,即使充分证明了其对超导性的拮抗性质,旋涡也可以被竞争性反铁磁序有效地捕获。这些结果为高温超导体的技术应用提供了新的指导。

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