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量子临界金属外超导体的态密度与谱函数

Density of States and Spectral Function of a Superconductor out of a Quantum-Critical Metal.

作者信息

Zhang Shang-Shun, Chubukov Andrey V

机构信息

School of Physics and Astronomy and William I. Fine Theoretical Physics Institute, University of Minnesota, Minneapolis, Minnesota 55455, USA.

出版信息

Phys Rev Lett. 2023 Aug 25;131(8):086502. doi: 10.1103/PhysRevLett.131.086502.

Abstract

We analyze the validity of a quasiparticle description of a superconducting state above a metallic quantum-critical point (QCP). A normal state at a QCP is a non-Fermi liquid with no coherent quasiparticles. A superconducting order gaps out low-energy excitations, except for a sliver of states for non-s-wave gap symmetry, and at a first glance, restores coherent quasiparticle behavior. We argue that this does not necessarily hold as the fermionic self-energy may remain singular above the gap edge. This singularity gives rise to markedly non-BCS behavior of the density of states and to the appearance of a nondispersing mode at the gap edge in the spectral function. We analyze the set of quantum-critical models with an effective dynamical four-fermion interaction V(Ω)∝1/Ω^{γ}, where Ω is a frequency of a boson, which mediates the interaction. We show that coherent quasiparticle behavior in a superconducting state holds for γ<1/2, but breaks down for larger γ. We discuss signatures of quasiparticle breakdown and compare our results with the photoemission data for Bi2201 and Bi2212.

摘要

我们分析了金属量子临界点(QCP)之上超导态的准粒子描述的有效性。QCP处的正常态是一种没有相干准粒子的非费米液体。超导序使低能激发能隙化,但对于非s波能隙对称性的一小部分态除外,乍一看,它恢复了相干准粒子行为。我们认为,由于费米子自能在能隙边缘之上可能仍然奇异,所以情况不一定如此。这种奇异性导致态密度呈现明显的非BCS行为,并在谱函数的能隙边缘出现非色散模式。我们分析了具有有效动力学四费米子相互作用V(Ω)∝1/Ω^{γ}的量子临界模型集,其中Ω是介导相互作用的玻色子的频率。我们表明,对于γ<1/2,超导态中的相干准粒子行为成立,但对于更大的γ则失效。我们讨论了准粒子失效的特征,并将我们的结果与Bi2201和Bi2212的光电子能谱数据进行了比较。

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