Vanishing of Resistivity upon Freezing of Vortex Liquid in Clean Superconductors

IF 1.5 4区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY Journal of the Physical Society of Japan Pub Date : 2024-04-26 DOI:10.7566/jpsj.93.054712
Naratip Nunchot, Ryusuke Ikeda
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Abstract

Superconducting transition, defined as vanishing of the resistivity, under a magnetic field in a clean bulk type II superconductor with weak sample disorder is believed to be a reflection of freezing of the vortex liquid to a kind of vortex solids. This fundamental issue on superconductivity is examined in detail. Based on the Ginzburg–Landau fluctuation theory for a three-dimensional (3D) system and through a supplementary study in 2D case, we find that the resistivity in the weakly disordered 3D case vanishes in a nearly discontinuous way, reflecting growth of the Bragg peaks on approaching the vortex lattice melting transition. In contrast, such a sharp decrease of the resistivity does not clearly appear in the corresponding 2D case. The consequences of this difference in the vanishing behavior of the resistivity between the 2D and 3D systems are discussed in relation to available experimental facts.
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洁净超导体中涡流液体冻结时电阻率的消失
在磁场作用下,具有弱样品无序性的纯净块状 II 型超导体中的超导转变(定义为电阻率消失)被认为是涡流液体冻结为一种涡流固体的反映。本文详细研究了超导这一基本问题。基于三维(3D)系统的金兹堡-朗道波动理论,并通过对二维情况的补充研究,我们发现在弱无序的三维情况下,电阻率以近乎不连续的方式消失,这反映了在接近涡旋晶格熔化转变时布拉格峰的增长。相比之下,电阻率的这种急剧下降在相应的二维情况下并不明显。本文结合现有的实验事实,讨论了二维和三维系统之间电阻率消失行为的这种差异所产生的后果。
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来源期刊
CiteScore
3.40
自引率
17.60%
发文量
325
审稿时长
3 months
期刊介绍: The papers published in JPSJ should treat fundamental and novel problems of physics scientifically and logically, and contribute to the development in the understanding of physics. The concrete objects are listed below. Subjects Covered JPSJ covers all the fields of physics including (but not restricted to) Elementary particles and fields Nuclear physics Atomic and Molecular Physics Fluid Dynamics Plasma physics Physics of Condensed Matter Metal, Superconductor, Semiconductor, Magnetic Materials, Dielectric Materials Physics of Nanoscale Materials Optics and Quantum Electronics Physics of Complex Systems Mathematical Physics Chemical physics Biophysics Geophysics Astrophysics.
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