凝聚态物理
超导电性
化学计量学
钉扎力
材料科学
钇
磁通钉扎
穿透深度
单晶
转变温度
临界电流
物理
化学
核磁共振
光学
有机化学
冶金
氧化物
作者
Z. Pribulová,Miroslav Marcin,J. Kačmarčı́k,S. Gabáni,К. Flachbart,N. Shitsevalova,Takao Mori,N. E. Sluchanko,M. A. Anisimov,V. Cambel,J. Šoltýs,C. Marcenat,T. Klein,P. Samuely
出处
期刊:JPhys materials
[IOP Publishing]
日期:2023-08-09
卷期号:6 (4): 045002-045002
标识
DOI:10.1088/2515-7639/aceeb7
摘要
Abstract In a previous study (2017 Phys. Rev. B 96 144501), a strong variation in the superconducting transition temperature T c of YB 6 differing by a factor of two has been explained by a change in the density of yttrium and boron vacancies tuning the electron–phonon interaction. Here, by using an array of miniature Hall probes, we address the penetration of the magnetic field, pinning, and critical current density on a series of YB 6 single crystals with T c variation between 4.25 and 7.35 K. The analysis of the superconducting and normal-state specific heat characteristics allowed us to determine T c and the stoichiometry of our samples. We observed almost no pinning in the most stoichiometric YB 6 crystal with the lowest T c . Upon increasing the number of vacancies weak pinning appears, and the critical current density is enhanced following the increased transition temperature in a linear variation. We argue that such an increase is, within weak collective pinning theory, consistent with the increasing number of vacancies that serve as pinning centers.
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