Nambu-Goldstone-Leggett modes in multi-condensate superconductors

T. Yanagisawa
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引用次数: 5

Abstract

Abstract Multi-gap superconductors exhibit interesting properties. In an N-gap superconductor, we have in general U(1)N phase invariance. This multiple-phase invariance is partially or totally spontaneously broken in a superconductor. The Nambu-Goldstone modes, as well as Higgs modes, are important and will play an important role in multi-condensate superconductors. The additional phase invariance leads to a new quantum phase, with help of frustrated Josephson effects, such as the time-reversal symmetry breaking, the emergence of massless modes and fractionally quantized-flux vortices. There is a possibility that half-flux vortices exist in two-component superconductors in a magnetic field. The half-quantum flux vortex can be interpreted as a monopole, and two half-flux vortices form a bound state connected by a domain wall. There is an interesting analogy between quarks and fractionally quantized-flux vortices in superconductors.
多凝聚超导体中的Nambu-Goldstone-Leggett模式
多间隙超导体表现出有趣的特性。在N隙超导体中,我们一般有U(1)N相不变性。这种多相不变性在超导体中部分或全部自发地被打破。Nambu-Goldstone模式以及希格斯模式是重要的,并且将在多凝聚态超导体中发挥重要作用。额外的相位不变性导致了一个新的量子相位,借助沮丧的约瑟夫森效应,如时间反转对称性破缺,无质量模式和分数量子化通量漩涡的出现。在磁场中的双分量超导体中存在半通量涡的可能性。半量子通量涡旋可以解释为单极子,两个半通量涡旋形成由畴壁连接的束缚态。夸克和超导体中的分数量子化通量漩涡之间有一个有趣的类比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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