Modification of Critical Current Density Anisotropy in High-Tc Superconductors by Using Heavy-Ion Irradiations

IF 1.3 Q3 INSTRUMENTS & INSTRUMENTATION
T. Sueyoshi
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引用次数: 11

Abstract

The critical current density Jc, which is a maximum value of zero-resistivity current density, is required to exhibit not only larger value but also lower anisotropy in a magnetic field B for applications of high-Tc superconductors. Heavy-ion irradiation introduces nanometer-scale irradiation tracks, i.e., columnar defects (CDs) into high-Tc superconducting materials, which can modify both the absolute value and the anisotropy of Jc in a controlled manner: the unique structures of CDs, which significantly affect the Jc properties, are engineered by adjusting the irradiation conditions such as the irradiation energy and the incident direction. This paper reviews the modifications of the Jc anisotropy in high-Tc superconductors using CDs installed by heavy-ion irradiations. The direction-dispersion of CDs, which is tuned by the combination of the plural irradiation directions, can provide a variety of the magnetic field angular variations of Jc in high-Tc superconductors: CDs crossing at ±θi relative to the c-axis of YBa2Cu3Oy films induce a broad peak of Jc centered at B || c for θi < ±45°, whereas the crossing angle of θi ≥ ±45° cause not a Jc peak centered at B || c but two peaks of Jc at the irradiation angles. The anisotropy of Jc can also modified by tuning the continuity of CDs: short segmented CDs formed by heavy-ion irradiation with relatively low energy are more effective to improve Jc in a wide magnetic field angular region. The modifications of the Jc anisotropy are discussed on the basis of both structures of CDs and flux line structures depending on the magnetic field directions.
重离子辐照对高温超导体临界电流密度各向异性的影响
临界电流密度Jc是零电阻电流密度的最大值,在高tc超导体的应用中,要求其在磁场B中不仅具有较大的值,而且具有较低的各向异性。重离子辐照在高tc超导材料中引入了纳米尺度的辐照径迹,即柱状缺陷(CDs),可以可控地改变Jc的绝对值和各向异性:通过调整辐照能量和入射方向等辐照条件,设计出对Jc性能有显著影响的CDs的独特结构。本文综述了重离子辐照cd对高温超导体Jc各向异性的影响。direction-dispersion的cd,由复数的组合调整照射方向,可以提供各种各样的高温超导体的Jc磁场角变化:cd穿越在±θ我相对于c-axis YBa2Cu3Oy电影引起广泛的峰值Jc集中在B | | c为θ<±45°,而交叉角θ我≥±45°原因不是Jc高峰集中在B | | c,但两座山峰Jc的照射角度。通过调整CDs的连续性也可以改变Jc的各向异性:在较宽的磁场角区,较低能量的重离子辐照形成的短节段cd更有效地改善了Jc。在CDs结构和磁通线结构的基础上,讨论了Jc各向异性随磁场方向的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.80
自引率
28.60%
发文量
27
审稿时长
11 weeks
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