论文标题
条纹超导体中碎片库珀对凝结
Fragmented Cooper pair condensation in striped superconductors
论文作者
论文摘要
玻色子中玻色子在超导体中的冷凝水或库珀对的凝结是指少数单个或两个粒子状态的宏观占领。凝结物称为“碎片”,即使不是一个,但多个状态在宏观上被占据。虽然已知碎裂发生在尤其是Bose-Einstein冷凝物中,但我们提出碎裂自然发生在条纹超导体中。为此,我们调查了在二维$ t $ -t $ -t^\ prime $ -J $型号中实现的超导基地状态的性质。在有电荷密度调制的情况下,凝结物被证明是碎片的,由位于条纹上的部分冷凝物组成。冷凝物的片段杂交,在整个系统中形成扩展的宏观波函数。结果是通过评估通过密度矩阵重新归一化组(DMRG)方法计算出的有限缸上的基态的单粒子两粒子密度矩阵获得的。我们的结果阐明了强相关电子系统中条纹顺序和超导性之间的复杂关系。
Condensation of bosons in Bose-Einstein condensates or Cooper pairs in superconductors refers to a macroscopic occupation of a few single- or two-particle states. A condensate is called "fragmented" if not a single, but multiple states are macroscopically occupied. While fragmentation is known to occur in particular Bose-Einstein condensates, we propose that fragmentation naturally takes place in striped superconductors. To this end, we investigate the nature of the superconducting ground state realized in the two-dimensional $t$-$t^\prime$-$J$ model. In the presence of charge density modulations, the condensate is shown to be fragmented and composed of partial condensates located on the stripes. The fragments of the condensates hybridize to form an extended macroscopic wave function across the system. The results are obtained from evaluating the singlet-pairing two-particle density matrix of the ground state on finite cylinders computed via the density matrix renormalization group (DMRG) method. Our results shed light on the intricate relation between stripe order and superconductivity in systems of strongly correlated electrons.