Incipient order in the t-J model at high temperatures
arXiv:cond-mat/0306342 · doi:10.1103/PhysRevLett.92.067002
Abstract
We analyze the high-temperature behavior of the susceptibilities towards a number of possible ordered states in the t-J-V model using the high-temperature series expansion. From all diagrams with up to ten edges, reliable results are obtained down to temperatures of order J, or (with some optimism) to J/2. In the unphysical regime, t<J, large superconducting susceptibilities are found, which moreover increase with decreasing temperatures, but for t>J, these susceptibilities are small and decreasing with decreasing temperature; this suggests that the t-J model does not support high-temperature superconductivity. We also find modest evidence of a tendency toward nematic and d-density wave orders. ERRATUM: Due to an error in the calculation, the series for d-wave supeconducting and extended s-wave superconducting orders were incorrect. We recalculate the series and give the replacement figures. In agreement with our earlier findings, we still find no evidence of any strong enhancement of the superconducting susceptibility with decreasing temperature. However, because different Pade approximants diverge from each other at somewhat higher temperatures than we originally found, it is less clear what this implies concerning the presence or absence of high-temperature superconductivity in the t-J model.
4 pages, 5 eps figures included; ERRATUM 2 pages, 3 eps figures correcting the error in the series for superconducting susceptibilities
References in corpus (1)
Cited by in corpus (20)
- Andreev - Saint James reflections: a probe of cuprate superconductors
- Non-perturbative behavior of the quantum phase transition to a nematic Fermi fluid
- Mechanism of High Temperature Superconductivity in a striped Hubbard Model
- Numerical Linked-Cluster Algorithms. II. t-J models on the square lattice
- Fluctuating Stripes in Strongly Correlated Electron Systems and the Nematic-Smectic Quantum Phase Transition
- The toy model for the high-Tc superconductivity
- Anisotropic superconductivity in the two-dimensional electron-phonon system
- High-Temperature Series Expansion for Spin-1/2 Heisenberg Models
- Anisotropy of the gap parameter in the hole-doped cuprates
- Orbital currents and charge density waves in a generalized Hubbard ladder
- Finite-Temperature Hole-Magnon Dynamics in an Antiferromagnet
- Phase diagram of the three band half-filled Cu-O two-leg ladder
- Broad Peak in the d_{x^2-y^2} Superconducting Correlation Length as a Function of Hole Concentration in the Two-Dimensional t-J Model
- Development of superconducting correlation at low temperatures in the two-dimensional t-J model
- d=3 Anisotropic and d=2 tJ Models: Phase Diagrams, Thermodynamic Properties, and Chemical Potential Shift
- Finite Temperature Strong Coupling Expansions for the SU(N) Hubbard Model
- Quantum fluctuations, pseudogap, and the T=0 superfluid density in strongly correlated d-wave superconductors
- On the Divergence of the Ferromagnetic Susceptibility in the SU(N) Nagaoka-Thouless Ferromagnet
- Stabilizing Topological Superfluidity of Lattice Fermions
- Onset of charge incompressibility and Mott gaps in the Honeycomb-Lattice SU(4) Hubbard Model: Lessons for Twisted Bilayer Graphene systems