September 2010

Journal

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

By:
Maier, Thomas A; Alvarez, Gonzalo ; Summers, Michael S; Schulthess, Thomas C
Journal Name:
Physical Review Letters
Page Number:
247001
Volume:
104
Issue Number:
24
Publication Date:
September 1, 2010
View DOI Listing:
https://doi.org/10.1103/PhysRevLett.104.247001

Abstract

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.