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Hydrostatic pressure: a very effective approach to significantly enhance critical current density in granular iron pnictide superconductors

机译:静水压力:一种有效地提高粒状铁离子超导体临界电流密度的有效方法

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摘要

Pressure is well known to significantly raise the superconducting transition temperature, Tc, in both iron pnictides and cuprate based superconductors. Little work has been done, however, on how pressure can affect the flux pinning and critical current density in the Fe-based superconductors. Here, we propose to use hydrostatic pressure to significantly enhance flux pinning and Tc in polycrystalline pnictide bulks. We have chosen Sr4V2O6Fe2As2 polycrystalline samples as a case study. We demonstrate that the hydrostatic pressure up to 1.2 GPa can not only significantly increase Tc from 15 K (underdoped) to 22 K, but also significantly enhance the irreversibility field, Hirr, by a factor of 4 at 7 K, as well as the critical current density, Jc, by up to 30 times at both low and high fields. It was found that pressure can induce more point defects, which are mainly responsible for the Jc enhancement. Our findings provide an effective method to significantly enhance Tc, Jc, Hirr, and the upper critical field, Hc2, for other families of Fe-based superconductors in the forms of wires/tapes, films, and single crystal and polycrystalline bulks.
机译:众所周知,压力会显着提高铁素化物和铜酸盐基超导体中的超导转变温度Tc。然而,关于压力如何影响铁基超导体中的磁通钉扎和临界电流密度的工作还很少。在这里,我们建议使用静水压力来显着提高多晶Pantickide本体中的磁通钉扎和Tc。我们选择了Sr4V2O6Fe2As2多晶样品作为案例研究。我们证明,高达1.2 GPa的静水压力不仅可以将Tc从15 K(未掺杂)显着提高到22 K,而且还可以将不可逆场Hirr在7 K处显着提高4倍,在低磁场和高磁场中,电流密度Jc最多可提高30倍。发现压力可引起更多的点缺陷,这主要是造成Jc增强的原因。我们的发现为以线/带,薄膜,单晶和多晶块形式的其他铁基超导体系列提供了一种有效地提高Tc,Jc,Hirr和上临界场Hc2的有效方法。

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