Sakai Shiro, Civelli Marcello, Imada Masatoshi
Department of Applied Physics, University of Tokyo, Hongo, Tokyo 113-8656, Japan.
Center for Emergent Matter Science, RIKEN, Wako, Saitama 351-0198, Japan.
Phys Rev Lett. 2016 Feb 5;116(5):057003. doi: 10.1103/PhysRevLett.116.057003.
The dynamics of a microscopic cuprate model, namely, the two-dimensional Hubbard model, is studied with a cluster extension of the dynamical mean-field theory. We find a nontrivial structure of the frequency-dependent self-energies, which describes an unprecedented interplay between the pseudogap and superconductivity. We show that these properties are well described by quasiparticles hybridizing with (hidden) fermionic excitations, emergent from the strong electronic correlations. The hidden fermion enhances superconductivity via a mechanism distinct from a conventional boson-mediated pairing, and originates the normal-state pseudogap. Though the hidden fermion is elusive in experiments, it can solve many experimental puzzles.
利用动力学平均场理论的团簇扩展方法,研究了微观铜酸盐模型(即二维哈伯德模型)的动力学。我们发现了与频率相关的自能的非平凡结构,它描述了赝能隙与超导性之间前所未有的相互作用。我们表明,这些性质可以通过与(隐藏的)费米子激发杂化的准粒子很好地描述,这些激发源自强电子关联。隐藏的费米子通过一种不同于传统玻色子介导配对的机制增强超导性,并引发正常态赝能隙。尽管隐藏的费米子在实验中难以捉摸,但它可以解决许多实验难题。