Grand canonical Gutzwiller approximation for magnetic inhomogeneous systems
arXiv:0801.2280 · doi:10.1103/PhysRevB.78.115105
Abstract
The Gutzwiller approximation (GA) for Gutzwiller-projected grand canonical wave functions with fugacity factors is investigated in detail. Our systems in general contain inhomogeneity and local magnetic moments. In deriving renormalization formulae, we also derive or estimate terms of higher powers of intersite contractions neglected in the conventional GA. We examine several different constraints, i.e., local/global spin-dependent/independent particle-number conservation. Out of the four, the local spin-dependent constraint seems the most promising at present. An improved GA derived from it agrees with the variational Monte Carlo method better than the conventional GA does. The corrections to the conventional GA can be interpreted as two-site correlation including the phase difference of configurations. Furthermore, projected quasi-particle excited states are orthogonal to each other within the GA. Using these states, spectral weights are calculated. We show that asymmetry between electron addition and removal spectra can appear by taking into account the higher powers of the intersite contractions in the case of the d-wave superconductors and the Fermi sea; the addition is smaller than the removal. However, the asymmetry is quite weak especially near the Fermi level. In contrast, projected s-wave superconductors can have the opposite asymmetry (addition larger than removal) especially near the Fermi level. In addition, formulae from the other three constraints are also derived, which may be useful depending on purposes.
18 pages. 8 figures added. Sec.II B, Sec.III F G H, Sec.IV G mainly revised
References in corpus (4)
- Extended Gutzwiller Approximation for Inhomogeneous System
- Spectral Weights, d-wave Pairing Amplitudes, and Particle-hole Tunneling Asymmetry of a Strongly Correlated Superconductor
- Quasiparticle spectral weights of Gutzwiller-projected high T_c superconductors
- On the Origin of the Tunneling Asymmetry in the Cuprate Superconductors: a variational perspective
Cited by in corpus (10)
- Paired chiral spin liquid with a Fermi surface in S=1 model on the triangular lattice
- Charge, bond, and pair density wave orders in a strongly correlated system
- QCD Critical Points and Their Associated Soft Modes
- Mott and Wigner-Mott transitions in doped correlated electron systems: effects of superlattice potential and inter-site correlation
- Enigma of the vortex state in a strongly correlated d-wave superconductor
- Quantum Spin Liquid phases in Kitaev Materials
- Quantum Hall Effect in a Weyl-Hubbard Model: Interplay between Topology and Correlation
- Charge modulation in the background of depleted superconductivity inside vortices
- Pinning of Vortices by impurities in Unconventional superconductors
- Strengthened correlations near [110] edges of -wave superconductors in the t-J model with the Gutzwiller approximation