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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Superconducting phase transitions in thin mesoscopic rings with enhanced surface superconductivity
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Superconducting phase transitions in thin mesoscopic rings with enhanced surface superconductivity

机译:具有增强的表面超导性的薄介观环中的超导相变

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摘要

The superconducting phase transitions between different vortex states with the magnetic field for a thin mesoscopic superconducting ring surrounded by a medium that enhanced its superconductivity near the boundary are investigated by the phenomenological Ginzburg-Landau theory. The transitions between different giant vortex states and between the giant vortex and multivortex states with ΔL > 1 (L is the vorticity of the vortex state) are found for a small ring with increasing surface enhancement. The influences of the surface enhancing superconducting effect and the inner radius as well as the temperature on phase transition are studied by examining the H-|ξ/b|, H-R_i, and H-T phase diagrams, respectively. Further increasing the effect of enhanced surface superconductivity, we find the reentrant transition with the same vorticity and the transitions between the stable multivortex states with ΔL > 1 for different ring inner radii. We also investigate the vortex configurations for a relatively large ring, and the vortex state with two stable vortex shells can be found as the ground state due to the enhanced surface superconductivity.
机译:通过现象学的Ginzburg-Landau理论研究了一个薄的介观超导环在磁场作用下在不同涡旋状态之间的超导相变,磁场被一种介质包围,该介质增强了其在边界附近的超导性。对于具有增加的表面增强的小环,发现了不同的巨涡态之间以及ΔL> 1(L是涡态的涡度)之间的巨涡和多涡态之间的过渡。通过分别检查H- |ξ/ b |,H-R_i和H-T相图,研究了表面增强超导效应,内半径以及温度对相变的影响。进一步提高增强的表面超导性的效果,我们发现对于不同的环内半径,具有相同涡度的折返过渡和稳定的多涡旋状态之间的过渡(ΔL> 1)。我们还研究了一个相对较大的环的旋涡构型,由于增强的表面超导性,可以发现具有两个稳定旋涡壳的旋涡态为基态。

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