外推法
介观物理学
凝聚态物理
磁化
超导电性
工作(物理)
涡流
高温超导
材料科学
物理
磁场
热力学
数学
数学分析
量子力学
作者
J. Barba-Ortega,J D González,Miryam R. Joya
出处
期刊:Tecno Lógicas
[Metropolitan Technological Institute (Medellin)]
日期:2019-05-15
卷期号:22 (45): 1-7
被引量:1
标识
DOI:10.22430/22565337.1301
摘要
The Time-dependent Ginzburg–Landau model (TDGLM) is a robust tool widely used to analyze the magnetization of the single-vortex state of a mesoscopic superconducting sample in presence of a magnetic field. The algorithm implemented in this work is applied to a square geometry surrounded by different kinds of materials simulated by deGennes extrapolation length . The inside of the sample remains at constant temperature , while its boundary remains at temperature . This temperature variation in the sample can be generated by a continuous laser wave injected into all the internal points, except for a thin surface layer in the boundary of the material. We found that the b value at , which mimics the magnetization curve for a corresponding , presents a linear dependence with the temperature. Therefore, although within the domain of validity TDGLM the parameter is to be considered temperature-independent in the vicinity of the bulk critical temperature and that depends on the density of states near the surface, we propose a simple dependence of using a TDGLM.
科研通智能强力驱动
Strongly Powered by AbleSci AI