Vortex Dynamics and Pinning in CaKFe4As4 Single Crystals from DC Magnetization Relaxation and AC Susceptibility

IF 1.9 Q3 PHYSICS, CONDENSED MATTER
Alina M. Ionescu, Ion Ivan, Corneliu F. Miclea, Daniel N. Crisan, Armando Galluzzi, Massimiliano Polichetti, Adrian Crisan
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Abstract

Among various “families” of iron-based superconductors, the quite recently discovered AeAFe4As4 (where Ae is an alkali-earth metal and A is an alkali metal) has high critical current density, a very high upper critical field, and a low anisotropy, and has recently received much interest for the possibility of high magnetic field applications at the liquid hydrogen temperature. We have performed DC magnetization relaxation and frequency-dependent AC susceptibility measurements on high-quality single crystals of CaKFe4As4 with the aim of determining the pinning potential U*. The temperature dependence of U* displays a clear crossover between elastic creep and plastic creep. At temperatures around 27–28 K, U* has a very high value, up to 1200 K, resulting in an infinitesimally small probability of thermally activated flux jumps. From the dependence of the normalized pinning potential on irreversible magnetization, we have determined the creep exponents in the two creep regimes, which are in complete agreement with theoretical models. The estimation of the pinning potential from multifrequency AC susceptibility measurements was possible only near the critical temperature due to equipment limitations, and the resulting value is very close to the one that resulted from the magnetization relaxation data. Magnetic hysteresis loops revealed a second magnetization peak and very high values of the critical current density.
基于直流磁化弛豫和交流磁化率的CaKFe4As4单晶的涡旋动力学和钉钉
在各种铁基超导体“家族”中,最近发现的AeAFe4As4(其中Ae是碱土金属,A是碱金属)具有高临界电流密度,非常高的上临界场和低各向异性,并且最近因在液氢温度下高磁场应用的可能性而引起了人们的极大兴趣。我们对高质量的CaKFe4As4单晶进行了直流磁化弛豫和频率相关的交流磁化率测量,目的是确定钉钉电位U*。U*的温度依赖性在弹性蠕变和塑性蠕变之间表现出明显的交叉。在27-28 K左右的温度下,U*具有非常高的值,高达1200 K,导致热激活通量跳变的概率无穷小。根据归一化钉钉电位对不可逆磁化的依赖关系,我们确定了两种蠕变状态下的蠕变指数,这与理论模型完全一致。由于设备的限制,多频交流磁化率测量只能在临界温度附近估计钉钉电位,结果值与磁化弛豫数据的结果非常接近。磁滞回线显示出第二个磁化峰和很高的临界电流密度值。
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来源期刊
Condensed Matter
Condensed Matter PHYSICS, CONDENSED MATTER-
CiteScore
2.90
自引率
11.80%
发文量
58
审稿时长
10 weeks
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