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首页> 外文期刊>Physical review letters >Dynamic Cluster Quantum Monte Carlo Simulations of a Two-Dimensional Hubbard Model with Stripelike Charge-Density-Wave Modulations: Interplay between Inhomogeneities and the Superconducting State
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Dynamic Cluster Quantum Monte Carlo Simulations of a Two-Dimensional Hubbard Model with Stripelike Charge-Density-Wave Modulations: Interplay between Inhomogeneities and the Superconducting State

机译:具有带状电荷密度波调制的二维Hubbard模型的动态簇量子蒙特卡罗模拟:不均匀性与超导状态之间的相互作用

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摘要

Using dynamic cluster quantum Monte Carlo simulations, we study the superconducting behavior of a 1/8 doped two-dimensional Hubbard model with imposed unidirectional stripelike charge-density-wave modulation. We find a significant increase of the pairing correlations and critical temperature relative to the homogeneous system when the modulation length scale is sufficiently large. With a separable form of the irreducible particle-particle vertex, we show that optimized superconductivity is obtained for a moderate modulation strength due to a delicate balance between the modulation enhanced pairing interaction, and a concomitant suppression of the bare particle-particle excitations by a modulation reduction of the quasiparticle weight.
机译:使用动态簇量子蒙特卡洛模拟,我们研究了施加了单向条纹状电荷密度波调制的1/8掺杂二维Hubbard模型的超导行为。当调制长度尺度足够大时,我们发现配对相关性和临界温度相对于均匀系统显着增加。使用不可分解粒子-粒子顶点的可分离形式,我们表明,由于调制增强的配对相互作用与调制对裸粒子-粒子激发的同时抑制之间的微妙平衡,获得了适度调制强度的优化超导性减少准粒子的重量。

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