Preparation of a/c-oriented YBa2Cu3O7−x homogeneous superconducting junctions via pulsed laser deposition

IF 1.3 3区 物理与天体物理 Q4 PHYSICS, APPLIED Physica C-superconductivity and Its Applications Pub Date : 2024-06-19 DOI:10.1016/j.physc.2024.1354551
Xiaoqin Liu , Yeming He , Peng Li , Wei Li , Yangyang Wang , Mingyang Zhou
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Abstract

The growth orientation of YBa2Cu3O7−x (YBCO) is extremely sensitive to the growth atmosphere and the heat-treatment temperature. However, according to the existing literature, to obtain YBCO with preferred a-axis orientation, a buffer layer needs to be prepared on the substrate. In this work, YBCO films were grown via pulsed laser deposition, and the influence of N2 and O2 deposition atmospheres on the growth orientation of the YBCO films was studied. It was found that high-quality YBCO films with preferred c-axis orientation can be grown in O2 atmosphere, but it is difficult to grow a-axis-oriented YBCO films in O2 atmosphere without using a buffer layer; however, YBCO films with a high degree of preferred a-axis orientation can be grown in N2 atmosphere without using a buffer layer. Furthermore, an a/c-oriented homogeneous YBCO bilayer with c-axis orientation in the lower layer and a-axis orientation in the upper layer was prepared. X-ray diffraction and scanning transmission electron microscopy results show that the bilayer is epitaxial with a good a/c orientation, and the resistance–temperature curve shows the occurrence of two transitions at temperatures of 91 and 71 K. We believe that these temperatures correspond to the superconducting onset transition temperatures of YBCO in the c- and a-axis growth orientations, respectively. The superconducting current usually flows within the Cu–O plane. With its sudden change in the direction of the current at the interface, the homogeneous junction prepared in this work is expected to provide new ideas for the research of high-temperature superconducting junction devices.

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通过脉冲激光沉积制备面向 a/c 的 YBa2Cu3O7-x 均相超导结
YBa2Cu3O7-x(YBCO)的生长取向对生长气氛和热处理温度极为敏感。然而,根据现有文献,要获得具有优先 a 轴取向的 YBCO,需要在基底上制备缓冲层。本研究通过脉冲激光沉积法生长了 YBCO 薄膜,并研究了 N2 和 O2 沉积气氛对 YBCO 薄膜生长取向的影响。研究发现,在 O2 气氛中可以生长出高质量的具有 c 轴优先取向的 YBCO 薄膜,但在不使用缓冲层的情况下,很难在 O2 气氛中生长出 a 轴取向的 YBCO 薄膜;然而,在不使用缓冲层的情况下,可以在 N2 气氛中生长出高度优先 a 轴取向的 YBCO 薄膜。此外,还制备了一种 a/c 取向的均匀 YBCO 双层膜,其下层为 c 轴取向,上层为 a 轴取向。X 射线衍射和扫描透射电子显微镜结果表明,该双层层具有良好的 a/c 取向外延,电阻-温度曲线显示在 91 和 71 K 的温度下出现了两个转变,我们认为这些温度分别对应于 YBCO 在 c 轴和 a 轴生长方向上的超导起始转变温度。超导电流通常在 Cu-O 平面内流动。本研究制备的均匀结在界面处电流方向发生了突变,有望为高温超导结器件的研究提供新思路。
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
2.70
自引率
11.80%
发文量
102
审稿时长
66 days
期刊介绍: Physica C (Superconductivity and its Applications) publishes peer-reviewed papers on novel developments in the field of superconductivity. Topics include discovery of new superconducting materials and elucidation of their mechanisms, physics of vortex matter, enhancement of critical properties of superconductors, identification of novel properties and processing methods that improve their performance and promote new routes to applications of superconductivity. The main goal of the journal is to publish: 1. Papers that substantially increase the understanding of the fundamental aspects and mechanisms of superconductivity and vortex matter through theoretical and experimental methods. 2. Papers that report on novel physical properties and processing of materials that substantially enhance their critical performance. 3. Papers that promote new or improved routes to applications of superconductivity and/or superconducting materials, and proof-of-concept novel proto-type superconducting devices. The editors of the journal will select papers that are well written and based on thorough research that provide truly novel insights.
期刊最新文献
Evidences for d-wave symmetry of c-axis superconducting gap in atomically thin twisted flakes of bismuth-based HTS cuprates Magnetic and mechanical analyses of superconducting coil for the magnetic Czochralsky technique Preparation of a/c-oriented YBa2Cu3O7−x homogeneous superconducting junctions via pulsed laser deposition Effect of laser energy density on microstructure and critical current of YGBCO and HGBCO films fabricated by PLD Editorial Board
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