利用连续波激光高斯光斑制造YBCO器件的涡旋运动研究

IF 0.8 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
A. Jukna
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引用次数: 0

摘要

本报告重点分析了YBa2Cu3O7-d(YBCO)器件中Abrikosov涡旋运动的研究结果,该器件是沉积在LaAlO3衬底上的YBCO超导体的c轴织构0.3´50´100µm3(厚度´宽度´长度)条纹。聚焦在直径为5mm的高斯形状光斑中的激光束改变了条纹,引发氧向外扩散及其在照明区域中的不均匀分布,并以这种方式导致光斑中心出现更高水平的脱氧,而其边缘出现更低水平的脱氧(弱超导区域的斜率)。在低于超导转变温度Tc的温度下,电流自行产生的磁场以阿布里科索夫磁涡旋的形式穿透条纹的光学改性区域,并且由于电流自行产生洛伦兹力,涡旋向其湮灭线移动,导致能量耗散。被钉扎在斜坡上的涡流经历强烈的钉扎并对移动的涡流施加磁阻力,这通过在温度0.933·Tc下测量的YBCO器件的阶跃电流-电压依赖性得到了证实。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Investigation of Vortex Motion in the YBCO Devices Manufactured Utilizing a Gaussian-shaped Optical Spot from a Continuous-wave Laser
The current report focuses on the analysis of the investigation results of the Abrikosov vortex motion in the YBa2Cu3O7-d (YBCO) device, which is a c-axis textured 0.3 ´ 50 ´ 100 µm3 (thickness ´ width ´ length) stripe of YBCO superconductor deposited on a LaAlO3 substrate. A laser beam focused in a Gaussian-shape optical spot of 5 mm in diameter modifies the stripe, initiating the oxygen out-diffusion and its uneven distribution in illuminated areas and in this way causing the appearance of a higher level of deoxygenation in the spot center and a lower level at its edges (slopes of weak superconductivity region). At temperatures below the temperature of the superconducting transition Tc, the current-self-produced magnetic field penetrates the optically modified area of the stripe in a form of Abrikosov magnetic vortices, and due to the current-self-produced Lorentz force, the vortices move toward their annihilation line resulting in energy dissipation. The vortices pinned on the slopes experience strong pinning and exert a magnetic drag force on moving vortices, which is confirmed by the stepped current-voltage dependences of the YBCO devices measured at temperatures 0.933·Tc £ T £ 0.958·Tc. Our results demonstrate the advantages of partially deoxygenated YBCO material for the development of superconducting electronic devices with electronic properties controlled by the motion of Abrikosov vortices at temperatures below Tc of the superconductor.
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来源期刊
Materials Science-medziagotyra
Materials Science-medziagotyra 工程技术-材料科学:综合
CiteScore
1.70
自引率
10.00%
发文量
92
审稿时长
6-12 weeks
期刊介绍: It covers the fields of materials science concerning with the traditional engineering materials as well as advanced materials and technologies aiming at the implementation and industry applications. The variety of materials under consideration, contributes to the cooperation of scientists working in applied physics, chemistry, materials science and different fields of engineering.
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