Effects of Energetic Carbon-Cluster Ion Irradiation on Lattice Structures of EuBa2Cu3O7−x Oxide Superconductor

IF 1.3 Q3 INSTRUMENTS & INSTRUMENTATION
A. Iwase, Y. Saitoh, A. Chiba, F. Hori, N. Ishikawa
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引用次数: 2

Abstract

C-axis-oriented EuBa2Cu3O7−x oxide films that were 100 nm thick were irradiated with 0.5 MeV C monoatomic ions, 2 MeV C4 cluster ions and 4 MeV C8 cluster ions at room temperature. Before and after the irradiation, X-ray diffraction (XRD) measurement was performed using Cu-Ka X-ray. The c-axis lattice constant increased almost linearly as a function of numbers of irradiating carbon ions, but it rarely depended on the cluster size. Cluster size effects were observed in the XRD peak intensity and the XRD peak width. With increasing the cluster size, the decrease in peak intensity becomes more remarkable and the peak width increases. The experimental result implies that the cluster ions with a larger size provide a more localized energy deposition in a sample, and cause larger and more inhomogeneous lattice disordering. As such, local and large lattice disordering acts as a pinning center for quantum vortex; energetic carbon-cluster ion irradiation will be effective for the increment in the critical current of EuBa2Cu3O7−x superconductors.
高能碳簇离子辐照对EuBa2Cu3O7−x氧化物超导体晶格结构的影响
用0.5 MeV C单原子离子、2 MeV C4簇离子和4 MeV C8簇离子在室温下辐照厚度为100 nm的C轴取向EuBa2Cu3O7−x氧化膜。辐照前后用Cu-Ka x射线进行x射线衍射(XRD)测量。c轴晶格常数随辐照碳离子数目的增加几乎呈线性增加,但很少依赖于簇的大小。簇大小对XRD峰强度和XRD峰宽均有影响。随着聚类大小的增加,峰强度的下降更加显著,峰宽增加。实验结果表明,更大尺寸的簇离子在样品中提供了更局部的能量沉积,并引起更大和更不均匀的晶格无序。因此,局部和大晶格无序充当了量子涡旋的钉住中心;高能碳簇离子辐照能有效提高EuBa2Cu3O7−x超导体的临界电流。
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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