Casimir Effect in Josephson Junctions

IF 1.4 3区 物理与天体物理 Q4 PHYSICS, APPLIED Journal of Low Temperature Physics Pub Date : 2024-12-10 DOI:10.1007/s10909-024-03254-3
Alex Levchenko
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Abstract

In a Josephson junction, the supercurrent is determined by both the discrete sub-gap part of the spectrum due to Andreev bound states and the continuous part of the spectrum from energy states outside the superconducting gap. We consider the cohesive force exerted on a junction, which is thermodynamically conjugated to the superflow, and comment on its connection to the Casimir effect in quantum electrodynamics. In contrast to the supercurrent, it is shown that in ballistic short junctions, the force is predominantly contributed by the continuum. Its magnitude is universally defined by the energy gap and coherence length of the superconductor per spin-dependent transverse mode. This force scales non-analytically with the junction length and is periodic with the superconducting phase. For long ballistic junctions, the force results from the interplay of oscillatory contributions originating from both bound states and the continuum. The resulting asymptotic limit for the force is established, including the correction terms. Thermal and impurity effects on the force are briefly discussed.

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约瑟夫逊结中的卡西米尔效应
在Josephson结中,超电流是由由Andreev束缚态引起的离散子间隙部分的频谱和由超导间隙外的能量态引起的连续部分的频谱决定的。我们考虑了施加在结上的内聚力,它在热力学上与超流共轭,并评论了它与量子电动力学中的卡西米尔效应的联系。与超电流相反,在弹道短结中,力主要是由连续体贡献的。它的大小一般由每个自旋相关横模的超导体的能隙和相干长度来定义。这种力与结长度成非解析比例,与超导相呈周期性变化。对于长弹道结,力是由来自束缚态和连续体的振荡贡献的相互作用产生的。建立了力的渐近极限,包括修正项。简要讨论了热和杂质对力的影响。
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来源期刊
Journal of Low Temperature Physics
Journal of Low Temperature Physics 物理-物理:凝聚态物理
CiteScore
3.30
自引率
25.00%
发文量
245
审稿时长
1 months
期刊介绍: The Journal of Low Temperature Physics publishes original papers and review articles on all areas of low temperature physics and cryogenics, including theoretical and experimental contributions. Subject areas include: Quantum solids, liquids and gases; Superfluidity; Superconductivity; Condensed matter physics; Experimental techniques; The Journal encourages the submission of Rapid Communications and Special Issues.
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