Published July 2021 | Version v1
Journal article

Enhancement of superconductivity due to kinetic-energy effect in the strongly correlated phase of the two-dimensional Hubbard model

  • 1. Electronics and Photonics Research Institute, National Institute of Advanced Industrial Science and Technology, 1-1-1 Umezono, Tsukuba, Ibaraki, 305-8568 (Japan)

Description

Highlights: • We investigated kinetic properties of correlated pairing states in strongly correlated phase of the Hubbard model in two dimensions, employing an optimization variational Monte Carlo method. • The Gutzwiller-BCS state is stabilized as the potential energy driven superconductivity because the Coulomb interaction energy is lowered while the kinetic energy increases in this state. • In contrast, in the ψλ-BCS wave function ψλBCS=eλKPGψBCS, the Coulomb energy increases and instead the kinetic energy is lowered in the strongly correlated phase. • The correlated superconducting state is realized as a kinetic energy driven pairing state and this indicates the enhancement of superconductivity due to kinetic-energy effect. We investigated kinetic properties of correlated pairing states in strongly correlated phase of the Hubbard model in two space dimensions. We employ an optimization variational Monte Carlo method, where we use the improved wave function ψλ=eλKψG for the Gutzwiller wave function ψG with K being the kinetic part of the Hamiltonian. The Gutzwiller-BCS state is stabilized as the potential energy driven superconductivity because the Coulomb interaction energy is lowered while the kinetic energy increases in this state. In contrast, we show that in the ψλ-BCS wave function ψλBCS=eλKPGψBCS, the Coulomb energy increases and instead the kinetic energy is lowered in the strongly correlated phase where the Coulomb repulsive interaction U is large. The correlated superconducting state is realized as a kinetic energy driven pairing state and this indicates the enhancement of superconductivity due to kinetic-energy effect.

Availability note (English)

Available from http://dx.doi.org/10.1016/j.physleta.2021.127382

Additional details

Identifiers

DOI
10.1016/j.physleta.2021.127382;
PII
S0375960121002462;

Publishing Information

Journal Title
Physics Letters. A
Journal Volume
403
Journal Page Range
vp.
ISSN
0375-9601
CODEN
PYLAAG

Optional Information

Copyright
Copyright (c) 2021 Elsevier B.V. All rights reserved.