Published June 27, 2024 | Version v1
Journal article Open

Spiral to stripe transition in the two-dimensional Hubbard model

  • 1. Max Planck Institute for Solid State Research, D-70569 Stuttgart, Germany
  • 2. Department of Physics, Harvard University, Cambridge, Massachusetts 02138, USA

Description

We obtain an almost complete understanding of the mean-field phase diagram of the two-dimensional Hubbard model on a square lattice with a sizable next-nearest-neighbor hopping and a moderate interaction strength. In particular, we clarify the nature of the transition region between the spiral and the stripe phase. Complementing previous [Phys. Rev. B 108, 035139 (2023)] real-space Hartree-Fock calculations on large finite lattices, we solve the mean-field equations for coplanar unidirectional magnetic order directly in the thermodynamic limit, and we determine the nature of the magnetic states right below the mean-field critical temperature T* by a Landau free-energy analysis. While the magnetic order for filling factors n1 is always of Néel type, for n1 the following sequence of magnetic states is found as a function of increasing hole-doping: Néel, planar circular spiral, multispiral, and collinear spin-charge stripe states. Multispiral states are superpositions of several spirals with distinct wave vectors, and lead to concomitant charge order. We finally point out that nematic and charge orders inherited from the magnetic order can survive even in the presence of fluctuations, and we present a corresponding qualitative phase diagram.

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10.1103_PhysRevB.109.235149.pdf

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Additional details

Identifiers

DOI
10.1103/PhysRevB.109.235149;
arXiv
arXiv:2403.09862;
Crossref Funder ID
10.13039/501100013368;

Publishing Information

Journal Title
Physical Review B
Journal Volume
109
Journal Issue
23
Journal Page Range
14 pgs.
ISSN
1550-235X

INIS

Country of Publication
United States
Country of Input or Organization
International Atomic Energy Agency (IAEA)
Subject category
S75: CONDENSED MATTER PHYSICS, SUPERCONDUCTIVITY AND SUPERFLUIDITY;
Descriptors DEI
ELECTRIC CHARGES; FLUCTUATIONS; FREE ENERGY; HARTREE-FOCK METHOD; HOLES; HUBBARD MODEL; MEAN-FIELD THEORY; NEEL TEMPERATURE; PHASE DIAGRAMS; SPIN; SPIN WAVES; THERMODYNAMIC MODEL

Optional Information

Contract/Grant/Project number
LPDS 2023-06
Notes
Record automatically processed
Funding organization
Deutsche Akademie der Naturforscher Leopoldina - Nationale Akademie der Wissenschaften